Energy and Climate Change

Universitas Teknokrat Indonesia Strengthens Green Campus Vision Through Sustainable Green Open Spaces and Environmental Stewardship

Bandar Lampung – Universitas Teknokrat Indonesia (UTI) continues to demonstrate its commitment to environmental sustainability through the development and preservation of green open spaces that serve as an integral part of campus life. More than simply enhancing the campus landscape, these green areas represent a strategic effort to create a healthier, more sustainable, and more resilient environment for students, lecturers, staff, and the wider academic community. Read More: Universitas Teknokrat Indonesia Promotes Sustainability and Green Entrepreneurship Through Zero Waste Week Creative Market Through continuous tree-planting programs and greening initiatives, the university has transformed its open spaces into thriving ecosystems that support biodiversity, improve environmental quality, and promote a culture of sustainability. These efforts reflect Universitas Teknokrat Indonesia’s vision of building a campus where environmental responsibility, community engagement, and academic excellence grow together. The university views green open spaces not merely as aesthetic features but as essential infrastructure that contributes to environmental conservation, social well-being, and sustainable development. As a result, the campus continues to invest in initiatives that expand vegetation coverage and strengthen ecological balance across its grounds. “Green open spaces are not only important for beautifying the campus environment; they play a vital role in creating a healthier, more comfortable, and more sustainable place for learning and collaboration,” said a representative of Universitas Teknokrat Indonesia. Creating a Sustainable and Livable Campus Environment As urban development continues to expand, the availability of green spaces has become increasingly important for maintaining environmental quality and supporting community well-being. Recognizing this need, Universitas Teknokrat Indonesia has integrated sustainability principles into its campus development strategy by prioritizing the preservation and enhancement of green areas. The university’s tree-planting activities and greening programs contribute to improved air quality, reduced heat accumulation, and enhanced ecological resilience. These green spaces also provide comfortable areas where students can study, conduct discussions, engage in outdoor activities, or simply enjoy a peaceful environment amid their academic routines. By creating a campus environment that balances modern infrastructure with ecological preservation, Universitas Teknokrat Indonesia demonstrates how educational institutions can serve as models for sustainable development and responsible environmental management. The initiative also fosters a stronger connection between the academic community and nature, encouraging greater awareness of environmental issues and the importance of conservation efforts. Advancing Sustainable Cities and Communities The university’s commitment to campus greening directly contributes to Sustainable Development Goal (SDG) 11: Sustainable Cities and Communities, which promotes the development of inclusive, safe, resilient, and sustainable environments. Green open spaces play a critical role in enhancing the livability of urban areas by improving environmental quality and providing accessible spaces for social interaction and recreation. Through its ongoing greening efforts, Universitas Teknokrat Indonesia creates a microcosm of sustainable urban development within the campus environment. The initiative supports the development of infrastructure that benefits both people and the environment, demonstrating how sustainability can be integrated into institutional planning and daily operations. Furthermore, the university’s approach aligns with global efforts to create resilient communities capable of adapting to environmental challenges while maintaining high standards of quality of life. Read More: Universitas Teknokrat Indonesia Accelerates Green Campus Transformation Through Solar Energy Initiative Protecting Biodiversity and Supporting Ecosystems In addition to supporting sustainable communities, the green open space initiative contributes significantly to Sustainable Development Goal (SDG) 15: Life on Land, which focuses on protecting terrestrial ecosystems, preserving biodiversity, and promoting sustainable land management. The expansion and maintenance of green areas help provide habitats for various plant and animal species while supporting ecological balance within the campus environment. By increasing vegetation coverage and protecting natural resources, the university contributes to broader efforts aimed at conserving biodiversity and mitigating environmental degradation. Tree-planting activities also help improve carbon absorption, regulate local temperatures, and strengthen ecosystem resilience. These benefits demonstrate the important role that educational institutions can play in supporting environmental conservation and sustainable land use practices. Through these initiatives, students gain firsthand exposure to sustainability practices and develop a deeper appreciation for the value of protecting natural ecosystems. Fostering Environmental Awareness Among Students One of the key objectives of the greening initiative is to cultivate environmental responsibility among members of the academic community. By involving students in tree-planting activities and sustainability campaigns, Universitas Teknokrat Indonesia encourages active participation in environmental stewardship. These activities serve as practical learning experiences that complement classroom education and reinforce the importance of sustainability in everyday life. Students are encouraged to become agents of change who can promote environmentally responsible practices within their communities and future professions. The university believes that sustainability education extends beyond academic instruction and must be reflected in the culture and daily activities of the campus itself. By integrating environmental values into campus life, Universitas Teknokrat Indonesia is helping shape a generation of leaders who are conscious of their responsibility to protect the environment and contribute to sustainable development. Vice Rector Highlights Commitment to a Greener Future The Vice Rector of Universitas Teknokrat Indonesia expressed appreciation for the university community’s active participation in greening programs and emphasized the strategic importance of environmental sustainability in higher education. “Our green open spaces represent more than physical infrastructure. They are a reflection of our commitment to creating a sustainable campus where environmental conservation, academic excellence, and community well-being are interconnected,” the Vice Rector stated. He further emphasized that sustainability remains a key pillar of the university’s long-term development strategy. “Universitas Teknokrat Indonesia is committed to fostering a culture of environmental responsibility among students and staff. Through tree planting, biodiversity conservation, and sustainable campus development, we are contributing to a healthier environment while preparing future generations to become responsible leaders and innovators,” he added. Building Stronger Futures Through Sustainability The success of Universitas Teknokrat Indonesia’s green open space initiatives demonstrates how environmental sustainability can become an integral part of higher education. By combining ecological conservation with community engagement and educational excellence, the university creates a campus environment that supports both human development and environmental well-being. Every tree planted and every green space preserved represents a long-term investment in the future. These initiatives not only enhance

Universitas Teknokrat Indonesia Accelerates Green Campus Transformation Through Solar Energy Initiative

Bandar Lampung – Universitas Teknokrat Indonesia (UTI) continues to strengthen its position as a forward-thinking institution committed to sustainability through the implementation of a comprehensive solar energy initiative across several key campus facilities. The installation of solar panels marks a significant milestone in the university’s Green Campus program, reflecting its dedication to environmental stewardship, energy efficiency, and the adoption of renewable energy technologies. Read More: Universitas Teknokrat Indonesia Promotes Environmental Sustainability Through “Kebun Kita” Application The initiative is designed not only to reduce the university’s dependence on conventional electricity sources but also to serve as a practical demonstration of how clean energy can be integrated into daily campus operations. By utilizing solar power, Universitas Teknokrat Indonesia is creating a more sustainable educational environment while providing measurable data on energy savings and environmental impact. The solar panel system has been strategically installed in several campus facilities to maximize energy production and optimize operational efficiency. Through this initiative, the university is able to monitor electricity generation and consumption, providing valuable insights into the effectiveness of renewable energy utilization in higher education institutions. “The adoption of solar energy is part of our long-term commitment to creating a sustainable campus environment. This initiative demonstrates that educational institutions can play a meaningful role in promoting renewable energy while contributing to environmental conservation,” a university representative explained. Advancing Sustainable Energy on Campus As global concerns regarding energy security and environmental sustainability continue to grow, universities are increasingly expected to become leaders in the transition toward cleaner and more efficient energy systems. Universitas Teknokrat Indonesia has responded to this challenge by integrating renewable energy technologies into its campus infrastructure. The solar panel installation enables the university to harness energy from the sun, a renewable resource that is abundant, environmentally friendly, and sustainable. By converting solar radiation into electricity, the system reduces reliance on fossil-fuel-based energy sources and helps lower operational energy costs. Beyond its practical benefits, the initiative serves as a living laboratory where students can observe and learn about renewable energy technologies in real-world settings. The project provides valuable educational opportunities that complement classroom instruction and strengthen students’ understanding of sustainable development practices. The availability of real-time energy performance data also allows the university community to better understand patterns of energy consumption and encourages more responsible energy use among students, faculty members, and staff. Read More: Universitas Teknokrat Indonesia Electrical Engineering Students Develop Solar-Powered Fly Trap to Support Sustainable Livestock Farming in West Lampung Supporting Affordable and Clean Energy The solar energy program directly contributes to Sustainable Development Goal (SDG) 7: Affordable and Clean Energy, which promotes universal access to reliable, sustainable, and modern energy solutions. Through the implementation of solar power systems, Universitas Teknokrat Indonesia demonstrates how renewable energy can be integrated into institutional operations while supporting national and global efforts to accelerate the transition toward cleaner energy sources. The initiative also highlights the important role of educational institutions in fostering awareness about renewable energy technologies and encouraging the adoption of sustainable energy practices among future generations. By showcasing the practical benefits of solar energy, the university helps inspire students and the broader community to explore innovative approaches to energy management and environmental sustainability. Contributing to Climate Action In addition to supporting clean energy goals, the solar panel initiative aligns closely with Sustainable Development Goal (SDG) 13: Climate Action, which calls for urgent measures to combat climate change and reduce greenhouse gas emissions. Traditional electricity generation methods often rely on fossil fuels that contribute significantly to carbon emissions. By replacing a portion of its energy consumption with solar-generated electricity, Universitas Teknokrat Indonesia actively reduces its carbon footprint and contributes to efforts aimed at mitigating climate change. The initiative reflects the university’s recognition that climate action requires collective responsibility and practical solutions. Through the implementation of renewable energy infrastructure, the institution demonstrates how organizations can take meaningful steps toward environmental sustainability while maintaining operational effectiveness. Furthermore, the project encourages the campus community to adopt environmentally responsible behaviors and become active participants in climate action initiatives. Creating a Living Laboratory for Sustainability Education One of the most valuable aspects of the solar panel program is its educational impact. Rather than serving solely as infrastructure, the installation functions as a real-world learning resource that supports research, innovation, and sustainability education. Students from various academic disciplines have opportunities to study renewable energy systems, analyze energy efficiency data, and explore the broader environmental implications of clean energy adoption. This practical exposure strengthens their understanding of emerging technologies and prepares them to contribute to sustainable development efforts in their future careers. The initiative aligns with Universitas Teknokrat Indonesia’s vision of integrating innovation, technology, and environmental responsibility into the learning experience. By combining academic knowledge with practical applications, the university empowers students to become future leaders in sustainability and technological advancement. Vice Rector Highlights Commitment to Sustainability The Vice Rector of Universitas Teknokrat Indonesia expressed strong support for the solar energy initiative and emphasized its importance in advancing the university’s sustainability agenda. “The solar panel installation is a reflection of our commitment to creating a campus that embraces innovation while prioritizing environmental responsibility. This initiative demonstrates that sustainability is not merely a concept but a practice that can be integrated into everyday campus life,” the Vice Rector stated. He further explained that the university aims to cultivate a culture of environmental awareness among all members of the academic community. “We want our students to witness firsthand how renewable energy technologies can create positive environmental impact. Through projects like this, Universitas Teknokrat Indonesia is preparing future generations to become innovators, researchers, and leaders who are committed to building a more sustainable world,” he added. Building a Sustainable Future Through Innovation The solar energy initiative is part of Universitas Teknokrat Indonesia’s broader strategy to create a sustainable and environmentally responsible campus. By investing in renewable energy infrastructure, the university demonstrates that technological advancement and environmental preservation can go hand in hand. The project also reinforces the institution’s role as an agent of change

Universitas Teknokrat Indonesia Promotes Environmental Sustainability Through “Kebun Kita” Application

Bandar Lampung – Universitas Teknokrat Indonesia (UTI) continues to strengthen its commitment to sustainability through innovative student-led initiatives that combine technology, education, and environmental stewardship. One of the latest innovations attracting attention is the Kebun Kita Application, a digital platform designed to encourage water conservation practices and support campus greening efforts while fostering environmental awareness among students. Read More: Universitas Teknokrat Indonesia and BRIN Strengthen Strategic Partnership to Advance Renewable Energy Research and Climate Action Developed as part of the university’s commitment to sustainable development, the application serves as an educational and interactive tool that empowers students to participate directly in environmental conservation activities. Through gardening-based learning experiences and digital monitoring features, users are encouraged to understand the importance of responsible water management while contributing to the creation of a healthier and greener campus environment. The initiative demonstrates how technology can be utilized not only to solve practical challenges but also to cultivate environmental responsibility among younger generations. “Kebun Kita was created to encourage students to become active participants in sustainability efforts. Through simple yet meaningful activities, we want to help build awareness about water conservation, environmental protection, and the importance of creating greener living spaces,” explained members of the student development team. Integrating Technology and Environmental Education As environmental challenges become increasingly complex, educational institutions are expected to play a greater role in promoting sustainability awareness and responsible environmental practices. Recognizing this need, Universitas Teknokrat Indonesia encourages students to develop innovations that create positive environmental impact while providing practical learning experiences. The Kebun Kita Application combines digital technology with hands-on environmental activities. Through interactive gardening programs, students are introduced to sustainable cultivation methods and efficient water management practices. The application serves as a guide and monitoring tool, helping users understand how their actions contribute to environmental preservation. By integrating technology into environmental education, the initiative creates an engaging learning experience that encourages active participation and long-term behavioral change. The project also reflects the university’s vision of preparing students not only as technology users but also as innovators who can leverage digital solutions to address environmental and societal challenges. Supporting Clean Water and Sustainable Resource Management One of the primary objectives of the Kebun Kita Application is to promote responsible water usage and increase awareness of water conservation practices. The initiative directly contributes to Sustainable Development Goal (SDG) 6: Clean Water and Sanitation, which emphasizes the sustainable management of water resources and the importance of ensuring water availability for future generations. Through educational features and gardening activities, students learn how efficient irrigation methods and responsible water consumption can reduce waste and support environmental sustainability. The application encourages users to adopt practical habits that help conserve water while maintaining healthy plant growth. As concerns regarding water scarcity and resource management continue to grow worldwide, initiatives such as Kebun Kita demonstrate the important role educational institutions can play in promoting sustainable water practices. Enhancing Biodiversity and Green Spaces on Campus Beyond water conservation, the project also aligns closely with Sustainable Development Goal (SDG) 15: Life on Land, which focuses on protecting ecosystems, preserving biodiversity, and promoting sustainable land use. The greening activities supported by the application contribute to the enhancement of campus green spaces, creating a more environmentally friendly and ecologically balanced university environment. By encouraging students to participate in planting and maintaining vegetation, the initiative helps increase biodiversity while improving the aesthetic and environmental quality of the campus. Green spaces are increasingly recognized for their positive impact on environmental health and human well-being. They contribute to improved air quality, support local ecosystems, reduce urban heat effects, and create more pleasant learning environments. The Kebun Kita initiative therefore serves as both an educational program and a practical environmental conservation effort that generates benefits for the entire academic community. Read More: Universitas Teknokrat Indonesia Electrical Engineering Students Develop Solar-Powered Fly Trap to Support Sustainable Livestock Farming in West Lampung Cultivating Environmental Responsibility Among Students One of the most significant impacts of the Kebun Kita Application is its ability to inspire environmental awareness among students. By involving users directly in sustainability activities, the initiative encourages a deeper understanding of ecological issues and the importance of individual responsibility in environmental protection. The project highlights how digital innovation can become a catalyst for positive social and environmental change. Through regular participation in gardening and conservation activities, students develop habits and values that contribute to a more sustainable lifestyle. The initiative also supports Universitas Teknokrat Indonesia’s broader mission of producing graduates who are not only academically accomplished but also socially responsible and environmentally conscious. Vice Rector Commends Student Innovation The Vice Rector of Universitas Teknokrat Indonesia praised the students behind the Kebun Kita Application and emphasized the importance of integrating sustainability principles into technological innovation. “Kebun Kita is an inspiring example of how our students are using technology to promote environmental responsibility and sustainable development. This innovation demonstrates that digital solutions can play a significant role in educating communities and encouraging positive environmental action,” the Vice Rector stated. He further highlighted the university’s commitment to fostering innovations that generate meaningful societal impact. “We are proud of our students for developing a platform that supports water conservation, environmental awareness, and campus greening efforts. Through initiatives like Kebun Kita, Universitas Teknokrat Indonesia continues to nurture future leaders who are capable of combining technological expertise with a strong commitment to sustainability,” he added. Building a Greener and More Sustainable Future The development of the Kebun Kita Application reflects Universitas Teknokrat Indonesia’s vision of creating a campus culture that values innovation, sustainability, and community engagement. By encouraging students to participate actively in environmental conservation, the university strengthens its role as a catalyst for positive change and sustainable development. More than just a digital platform, Kebun Kita serves as a symbol of how education and technology can work together to address environmental challenges and inspire responsible behavior. The initiative demonstrates that meaningful sustainability efforts begin with small, consistent actions that collectively create lasting impact. As Universitas Teknokrat Indonesia continues to advance

Universitas Teknokrat Indonesia and BRIN Strengthen Strategic Partnership to Advance Renewable Energy Research and Climate Action

Bandar Lampung – Universitas Teknokrat Indonesia (UTI) has reaffirmed its commitment to addressing global environmental challenges through a strategic partnership with Indonesia’s National Research and Innovation Agency (BRIN). The collaboration represents a significant milestone in strengthening research, innovation, and technological development aimed at supporting renewable energy advancement and climate resilience. Read More: Universitas Teknokrat Indonesia Electrical Engineering Students Develop Solar-Powered Fly Trap to Support Sustainable Livestock Farming in West Lampung The partnership was formalized through a series of strategic discussions and the signing of a Memorandum of Understanding (MoU), highlighting the shared commitment of both institutions to accelerating research and innovation in environmentally friendly technologies. The initiative reflects a common vision of creating impactful scientific solutions capable of addressing the increasingly complex challenges related to energy sustainability and climate change. As part of the collaborative agenda, the Universitas Teknokrat Indonesia delegation visited BRIN’s advanced research facilities and laboratories to explore opportunities for joint research, technology development, and academic collaboration. The visit provided valuable insights into cutting-edge technologies that support renewable energy implementation, energy efficiency, and sustainable infrastructure development. “This collaboration reflects our determination to contribute actively to scientific advancement and sustainable development. Through partnerships with leading research institutions such as BRIN, we aim to strengthen the capacity of our students, researchers, and academics to produce innovations that provide real benefits for society,” a university representative stated during the visit. Building a Strong Foundation for Renewable Energy Innovation The strategic partnership between Universitas Teknokrat Indonesia and BRIN is expected to create broader opportunities for collaborative research in renewable energy technologies, energy efficiency systems, and environmentally sustainable infrastructure. As global demand for clean energy solutions continues to increase, universities and research institutions play a crucial role in developing technologies capable of supporting the transition toward a low-carbon economy. Through this partnership, both institutions seek to combine academic expertise, scientific resources, and research infrastructure to accelerate innovation and strengthen Indonesia’s competitiveness in the field of sustainable energy. During the visit, the UTI delegation explored various state-of-the-art laboratory facilities equipped with advanced technologies for energy research and innovation. These facilities are expected to serve as important platforms for future collaborative projects involving lecturers, researchers, and students. The partnership also opens opportunities for knowledge exchange, joint publications, research internships, and capacity-building programs designed to foster a new generation of researchers and innovators. Read More: Universitas Teknokrat Indonesia Civil Engineering Students Transform Waste into Sustainable Infrastructure Through “Tekno Plasting” Innovation Supporting Climate Action Through Research and Innovation The collaboration aligns strongly with Sustainable Development Goal (SDG) 13: Climate Action, which emphasizes the importance of taking urgent action to combat climate change and its impacts. Climate change remains one of the most significant challenges facing the global community, affecting ecosystems, economies, and human well-being. Research-driven solutions are increasingly recognized as essential tools for mitigating environmental impacts and supporting sustainable development. Through collaborative research initiatives, Universitas Teknokrat Indonesia and BRIN aim to contribute to the development of technologies and policies that support environmental protection, reduce carbon emissions, and strengthen climate resilience. The partnership demonstrates how higher education institutions can play a proactive role in addressing environmental challenges by integrating sustainability into research, education, and innovation activities. Advancing Affordable and Clean Energy In addition to climate action, the collaboration directly supports Sustainable Development Goal (SDG) 7: Affordable and Clean Energy, which promotes access to reliable, sustainable, and modern energy for all. Renewable energy technologies have become increasingly important in efforts to reduce dependence on fossil fuels and create more sustainable energy systems. Through this partnership, UTI and BRIN seek to contribute to the advancement of clean energy solutions that are both environmentally responsible and economically viable. The focus on renewable energy research is expected to generate innovations that support national energy security while creating opportunities for technological development and industrial growth. By investing in research and human resource development, both institutions aim to strengthen Indonesia’s capacity to meet future energy demands sustainably. Empowering Future Innovators and Researchers Beyond research outcomes, the partnership provides valuable opportunities for students and young researchers to engage directly with cutting-edge scientific environments. Through exposure to advanced research facilities and collaboration with experienced scientists, students can develop practical skills and gain insights into emerging technological trends. This approach aligns with Universitas Teknokrat Indonesia’s mission of producing graduates who are not only academically competent but also capable of contributing to national and global development through innovation and scientific excellence. The collaboration is expected to encourage interdisciplinary research and inspire students to pursue careers in science, technology, engineering, and environmental sustainability. Vice Rector Welcomes Strategic Collaboration The Vice Rector of Universitas Teknokrat Indonesia expressed strong support for the partnership, emphasizing its importance in strengthening the university’s role in research, innovation, and sustainable development. “This collaboration with BRIN represents an important milestone in our efforts to expand research excellence and contribute meaningfully to addressing global challenges. We believe that innovation and scientific collaboration are essential for creating solutions that support environmental sustainability and national progress,” the Vice Rector stated. He further emphasized that the university remains committed to preparing future generations capable of leading technological and environmental transformation. “Through strategic partnerships such as this, Universitas Teknokrat Indonesia is creating opportunities for students and researchers to engage in impactful scientific work. We are committed to producing graduates who possess not only academic excellence but also the vision and capabilities required to develop sustainable solutions for Indonesia and the world,” he added. Strengthening Indonesia’s Sustainable Future The partnership between Universitas Teknokrat Indonesia and BRIN reflects a shared commitment to advancing science and technology for the benefit of society. By focusing on renewable energy, energy efficiency, and climate action, the collaboration contributes to national efforts to build a more sustainable and resilient future. As environmental and energy challenges continue to evolve, collaboration among universities, research institutions, government agencies, and industry stakeholders will become increasingly important. The MoU serves as a foundation for long-term cooperation that can generate meaningful innovations and strengthen Indonesia’s position within the global research and innovation landscape.

Universitas Teknokrat Indonesia Electrical Engineering Students Develop Solar-Powered Fly Trap to Support Sustainable Livestock Farming in West Lampung

Bandar Lampung – Students from the Electrical Engineering Study Program at Universitas Teknokrat Indonesia (UTI) have once again demonstrated their ability to develop practical technological solutions that directly address community needs. Through a community-based innovation project in Tugu Sari Village, West Lampung, the students successfully designed and implemented a solar-powered fly trap system aimed at helping local sheep farmers reduce pest disturbances and improve livestock productivity. Read More: Universitas Teknokrat Indonesia Civil Engineering Students Transform Waste into Sustainable Infrastructure Through “Tekno Plasting” Innovation The innovation was developed in response to challenges faced by sheep farmers, who often struggle with fly infestations around livestock enclosures. Beyond causing discomfort to animals, flies can negatively impact productivity and increase the risk of disease transmission among livestock and surrounding communities. Recognizing this issue, the Electrical Engineering students designed a sustainable and energy-efficient solution that utilizes renewable energy technology to control fly populations in farming environments. The project highlights the university’s commitment to encouraging students to apply their academic knowledge to solve real-world problems while contributing to sustainable rural development. “This innovation was inspired by the needs of local farmers who require practical and affordable technology to improve livestock management. Our goal was to create a solution that is effective, environmentally friendly, and easy to implement in rural communities,” explained the student development team. Harnessing Solar Energy for Sustainable Agriculture The solar-powered fly trap operates using photovoltaic panels as its primary energy source. The system collects solar energy during the day and powers a combination of ultraviolet lamps and electrified wire mesh designed to attract and eliminate flies automatically. By utilizing solar power, the device can function independently without relying on conventional electricity sources, making it particularly suitable for agricultural areas where access to electrical infrastructure may be limited. The automatic operation also reduces the need for continuous manual intervention, providing farmers with a practical and efficient pest-control solution. The integration of renewable energy technology into agricultural applications demonstrates how innovation can improve productivity while minimizing environmental impact. According to the student team, the technology was specifically designed to be cost-effective, durable, and adaptable to local farming conditions, ensuring that it can provide long-term benefits to livestock owners. Improving Livestock Health and Community Well-Being One of the primary objectives of the project is to improve the health and welfare of livestock. Excessive fly populations are known to cause stress in animals, reduce feeding efficiency, and increase the likelihood of disease outbreaks. By controlling pest populations, farmers can create a healthier environment for their sheep, ultimately supporting higher productivity and better livestock performance. The innovation directly contributes to Sustainable Development Goal (SDG) 3: Good Health and Well-Being, which emphasizes the importance of promoting healthy lives and improving well-being for all. By reducing the risk of disease transmission among animals and minimizing environmental health hazards, the technology supports both livestock health and public health outcomes. In addition to its agricultural benefits, the project raises awareness about the importance of preventive approaches in maintaining animal welfare and supporting sustainable farming practices. Read More: Universitas Teknokrat Indonesia Strengthens Sustainable Campus Vision Through Green Open Spaces That Support Learning and Well-Being Advancing Renewable Energy Solutions The project also aligns strongly with Sustainable Development Goal (SDG) 7: Affordable and Clean Energy through its use of solar power as a renewable and environmentally friendly energy source. As the global demand for sustainable energy solutions continues to grow, innovations such as the solar-powered fly trap demonstrate how renewable energy technologies can be applied in practical ways to address local challenges. The project showcases the potential of solar energy not only as an alternative power source but also as a driver of innovation in agriculture and rural development. By reducing dependence on conventional energy systems, the innovation contributes to broader efforts aimed at promoting clean energy adoption and supporting environmentally responsible development. Bridging Academic Knowledge and Community Needs The development of the solar-powered fly trap reflects Universitas Teknokrat Indonesia’s commitment to experiential and community-oriented learning. Through projects that engage directly with local communities, students gain valuable opportunities to apply engineering principles, conduct field research, and develop technologies that generate tangible social impact. This hands-on approach enables students to strengthen their technical competencies while developing problem-solving, communication, and collaboration skills that are essential in their future professional careers. The project also illustrates how universities can serve as catalysts for innovation by connecting academic expertise with community needs. Through meaningful engagement with local stakeholders, students are encouraged to become active contributors to regional development and societal progress. Vice Rector Praises Students’ Commitment to Innovation The Vice Rector of Universitas Teknokrat Indonesia expressed appreciation for the achievement and highlighted the importance of technology-driven solutions that address real challenges faced by communities. “This innovation demonstrates how our students are utilizing their knowledge and creativity to develop technologies that directly benefit society. The solar-powered fly trap is an excellent example of how engineering education can generate practical solutions that improve productivity, support environmental sustainability, and enhance community welfare,” the Vice Rector stated. He further emphasized that Universitas Teknokrat Indonesia remains committed to fostering an academic environment that encourages innovation, research, and community engagement. “We are proud of our Electrical Engineering students for creating a technology that not only addresses local agricultural challenges but also supports global sustainable development goals. This project reflects our vision of producing graduates who are innovative, socially responsible, and capable of contributing to national development through technology,” he added. A Step Toward Sustainable Rural Development The implementation of the solar-powered fly trap in Tugu Sari Village serves as a powerful example of how higher education institutions can contribute to sustainable development through innovation and community collaboration. By combining renewable energy technology with practical agricultural applications, the project creates value for local farmers while supporting environmental conservation efforts. More than just a technological device, the innovation represents a commitment to empowering communities through accessible and sustainable solutions. It demonstrates that student-driven research and innovation can play a meaningful role in addressing local challenges and improving

Universitas Teknokrat Indonesia Students Develop IoT-Based Fish Health Monitoring System to Advance Sustainable Aquaculture

Bandar Lampung – Students of Universitas Teknokrat Indonesia (UTI) have once again demonstrated their innovation and technological excellence through the development of the Simba Smart Health System, an Internet of Things (IoT)-based fish health monitoring system designed to support sustainable and efficient aquaculture practices. The project was showcased during the Academic Expo 2026, highlighting the university’s commitment to fostering impactful innovations that address real-world challenges. Read More: AgroBot Feed Innovation by Universitas Teknokrat Indonesia Students Advances Smart Livestock Technology The Simba Smart Health System was developed through a collaborative effort between students from the Computer Engineering and Information Technology programs. By integrating advanced hardware technologies with intelligent data processing systems, the innovation enables real-time monitoring of water quality conditions while also detecting potential threats from predators that could endanger fish populations. This interdisciplinary collaboration reflects the growing importance of combining expertise from multiple fields to create practical solutions for industry and society. The system utilizes smart sensors and digital monitoring technologies to collect and analyze environmental data continuously, allowing fish farmers to make faster and more accurate decisions in managing aquaculture operations. According to the student development team, the primary objective of the Simba Smart Health System is to help improve productivity, reduce losses caused by environmental factors, and promote more efficient fish farming practices through digital transformation. “Through the Simba Smart Health System, we aim to provide a practical technological solution that helps fish farmers monitor critical conditions in real time. We believe technology can play a significant role in improving productivity and supporting sustainable aquaculture development,” the student team explained. The innovation represents a concrete example of how higher education institutions can bridge academic knowledge with practical applications. More than just an exhibition project, the system demonstrates the potential of student-led research and innovation to contribute directly to local economic development and community welfare. Strengthening Innovation Through Project-Based Learning The development of the Simba Smart Health System also reflects Universitas Teknokrat Indonesia’s educational approach, which emphasizes project-based learning, innovation, and industry-relevant competencies. Through hands-on experiences, students are encouraged to develop solutions that respond to contemporary challenges while enhancing their technical and professional skills. The project serves as a tangible implementation of Sustainable Development Goal (SDG) 4: Quality Education, which promotes inclusive and equitable quality education while fostering lifelong learning opportunities. By engaging students in collaborative research and innovation projects, the university equips future graduates with practical competencies, critical thinking abilities, and problem-solving skills required in the rapidly evolving digital era. Supporting the Modernization of Indonesia’s Fisheries Sector Beyond education, the Simba Smart Health System contributes to the advancement of SDG 9: Industry, Innovation, and Infrastructure. The application of IoT technology in aquaculture represents an important step toward modernizing traditional fish farming methods and strengthening the technological infrastructure of Indonesia’s fisheries sector. By integrating smart sensors, automated monitoring, and digital data management, the system provides a more scientific and data-driven approach to fish farming. Such innovations have the potential to increase operational efficiency, reduce risks, and improve overall production quality. Experts have increasingly emphasized the importance of digital transformation in agriculture and fisheries as a strategy to enhance competitiveness and sustainability. Through innovations such as the Simba Smart Health System, Universitas Teknokrat Indonesia contributes to accelerating technology adoption at the grassroots level and supporting the development of a more resilient fisheries industry. University Leadership Applauds Student Achievement Vice Rector of Universitas Teknokrat Indonesia expressed appreciation for the students’ achievement and their commitment to creating solutions that generate meaningful social impact. “The Simba Smart Health System demonstrates the creativity, technical competence, and collaborative spirit of our students. This innovation proves that higher education is not only about acquiring knowledge but also about creating solutions that address real challenges faced by society. We are proud to see our students contributing to technological advancement and sustainable development through innovation,” said the Vice Rector of Universitas Teknokrat Indonesia. The Vice Rector further emphasized that the university remains committed to nurturing an innovation ecosystem that encourages interdisciplinary collaboration, research excellence, and technology commercialization for the benefit of the wider community. Building a Sustainable Innovation Ecosystem The Academic Expo 2026 serves as a platform for students to showcase their creativity, research outcomes, and technological innovations while connecting academic achievements with societal needs. Through events such as this, Universitas Teknokrat Indonesia continues to strengthen its position as a center for innovation, entrepreneurship, and technological development in Indonesia. The Simba Smart Health System stands as a testament to how student innovation can contribute not only to academic excellence but also to economic empowerment and sustainable development. By supporting the digitalization of aquaculture, the project has the potential to improve fish farmers’ productivity, strengthen local economies, and enhance community welfare. As technological advancement continues to shape the future, Universitas Teknokrat Indonesia remains dedicated to producing graduates who are not only highly skilled but also capable of driving positive change through innovation. The success of the Simba Smart Health System reinforces the university’s vision of becoming a catalyst for sustainable technological development and national progress. Supporting the Sustainable Development Goals (SDGs) The Simba Smart Health System directly contributes to several United Nations Sustainable Development Goals. In addition to supporting SDG 4 (Quality Education) and SDG 9 (Industry, Innovation, and Infrastructure), the project also aligns with SDG 8 (Decent Work and Economic Growth) by helping improve productivity within the fisheries sector and supporting economic opportunities for local communities. Furthermore, the technology promotes more responsible resource management, contributing to long-term environmental and economic sustainability. Through innovations that combine education, technology, and social impact, Universitas Teknokrat Indonesia continues to demonstrate its commitment to advancing sustainable development at both local and national levels. Read More: Universitas Teknokrat Indonesia Academic Expo Showcases “Nutriscane” Innovation Supporting SDGs #KampusTerbaikdiLampung#KampusFavoritdiLampung#KampusUnggulandiLampung#kampushijaulampung#kampuslampungberkelanjutan

AgroBot Feed Innovation by Universitas Teknokrat Indonesia Students Advances Smart Livestock Technology

Bandar Lampung – Students of Universitas Teknokrat Indonesia (UTI) have once again demonstrated their innovative excellence by developing AgroBot Feed, a cutting-edge automatic cattle feeding robot designed to modernize livestock management. This breakthrough innovation marks another significant milestone in the university’s commitment to producing impactful, technology-driven solutions for real-world challenges. Read More : Universitas Teknokrat Indonesia Academic Expo Showcases “Nutriscane” Innovation Supporting SDGs The development of AgroBot Feed reflects the successful implementation of Sustainable Development Goal (SDG) 4: Quality Education, where Universitas Teknokrat Indonesia continues to position itself as a center for transformative learning. Through a combination of Artificial Intelligence (AI), robotics, and smart agriculture systems, students are not only gaining theoretical knowledge but also applying it directly in practical and meaningful ways. Developed within the university’s Center of Excellence, AgroBot Feed is the result of close collaboration between students and faculty members. This hands-on learning approach ensures that students are equipped with future-ready skills, enabling them to become innovators capable of responding to the demands of the rapidly evolving digital era. AgroBot Feed is designed with a smart control system that can automatically regulate feeding schedules and portions with high accuracy. This feature allows livestock farmers to maintain consistency in animal nutrition while significantly reducing manual labor. The system also minimizes the risk of overfeeding or underfeeding, contributing to improved livestock health and productivity. The innovation strongly aligns with SDG 9: Industry, Innovation, and Infrastructure, as it promotes the adoption of advanced technology in the agricultural and livestock sectors. By introducing automation into daily farming activities, AgroBot Feed helps build a more efficient and sustainable agricultural ecosystem. This transformation is particularly important in supporting local farmers to adapt to the challenges of the Industry 4.0 era, where digital integration is becoming essential. According to the student development team, the idea behind AgroBot Feed originated from the challenges faced by traditional livestock farmers, including time-consuming feeding processes and inconsistent feeding schedules. By leveraging modern technology, the team aims to create a solution that is not only efficient but also accessible and scalable for wider use. “AgroBot Feed is designed to simplify farmers’ daily activities while improving productivity. We hope this innovation can contribute to the advancement of smart farming in Indonesia,” said one of the student developers during the presentation. The robot was officially showcased at the 2026 Academic Expo, one of Universitas Teknokrat Indonesia’s flagship events that highlights student innovation and creativity. The exhibition attracted significant attention from visitors, academics, and industry observers, who recognized the potential of AgroBot Feed to transform the livestock sector. University representatives emphasized that innovations like AgroBot Feed demonstrate the institution’s strong commitment to encouraging research-based learning and technological development. By integrating academic knowledge with practical implementation, the university continues to produce graduates who are not only skilled but also capable of driving innovation at both national and global levels. “AgroBot Feed is more than just a technological product—it represents our students’ dedication to creating solutions that benefit society. This is a clear example of how education, research, and innovation can work together to support sustainable development,” a university official stated. Beyond its technical advantages, AgroBot Feed also reflects a broader commitment to improving livestock welfare and supporting national food security. By ensuring efficient and precise feeding, the system contributes to healthier livestock, which ultimately benefits the entire agricultural supply chain. Looking forward, Universitas Teknokrat Indonesia aims to further develop and refine this innovation, with the potential for commercialization and wider adoption across Indonesia’s agricultural sector. The university also encourages continuous collaboration with industry partners to ensure that such innovations can reach and benefit local communities. AgroBot Feed stands as a powerful symbol of how student innovation, when supported by quality education and strong institutional guidance, can create meaningful contributions to sustainable development and national progress. Read More: Innovative Learning at Universitas Teknokrat Indonesia: Civil Engineering Students Develop Soil Layer and Hydrological Process Scale Model Support SDGs:

Innovative Learning at Universitas Teknokrat Indonesia: Civil Engineering Students Develop Soil Layer and Hydrological Process Scale Model

Bandar Lampung – Civil Engineering students at Universitas Teknokrat Indonesia continue to demonstrate innovation in applied learning through the development of a detailed scale model that illustrates soil layers and hydrological processes. This educational project was designed as a practical learning medium to simplify complex geotechnical concepts and the natural water cycle, enabling students to better understand the interaction between soil characteristics and water movement. Other News: Teknokrat Electrical Engineering Students Develop Eco-Friendly Micro-Hydro Power Plant for Rural Energy Solutions The creation of the scale model reflects a hands-on learning approach that encourages students to translate theoretical knowledge into tangible visualization. In civil engineering, understanding the relationship between soil properties and hydrological dynamics is crucial, as both significantly influence the planning, design, and construction of infrastructure such as buildings, highways, bridges, and dams. This project integrates two fundamental areas of civil engineering study: Soil Mechanics and Hydrology. Through Soil Mechanics, students analyze the physical and mechanical properties of soil, including density, permeability, and bearing capacity—factors that determine the stability and safety of structures built on the ground. Meanwhile, Hydrology focuses on the natural movement of water within the environment, encompassing rainfall patterns, infiltration processes, groundwater flow, and surface runoff. According to the academic team supervising the project, combining these two disciplines allows students to develop a more holistic understanding of how soil and water systems interact in real-world engineering scenarios. “By visualizing soil layers and water movement through a scale model, students can more easily grasp complex geotechnical concepts that are often difficult to understand through theory alone,” explained one of the lecturers involved in the project. The scale model developed by the students presents a detailed cross-sectional representation of underground soil layers. The model includes several strata arranged sequentially, starting from topsoil, followed by clay, sand, and ending with bedrock. Each layer is designed with different colors and textures to provide a realistic depiction of subsurface geological structures. In addition to illustrating soil stratification, the model also incorporates dynamic simulations of hydrological processes. Water can be poured onto the model surface to demonstrate rainfall infiltration into the soil and the formation of surface runoff. Through this simulation, students are able to observe how water interacts with different soil types, including how permeability and soil composition influence water absorption and flow. This interactive approach not only enhances students’ conceptual understanding but also strengthens their analytical and problem-solving skills in addressing real engineering challenges. By observing the physical behavior of water within layered soils, students gain insights into issues such as drainage planning, slope stability, groundwater management, and flood mitigation. The project also reflects Universitas Teknokrat Indonesia’s commitment to promoting experiential learning in engineering education. By combining theoretical instruction with practical demonstrations, the university aims to prepare graduates who are not only academically competent but also capable of applying their knowledge to real-world infrastructure development. Through innovative learning initiatives such as this scale model project, Civil Engineering students at Universitas Teknokrat Indonesia continue to showcase their creativity, technical competence, and readiness to contribute to sustainable infrastructure solutions in the future. Other News: Civil Engineering Students of Universitas Teknokrat Indonesia Showcase Dam Scale Model at Academic Expo 2026 Support SDGs:

Innovation Shines at Universitas Teknokrat Indonesia: Students Win National Competition with Solar-Powered Car

Students from the Electrical Engineering Department of Universitas Teknokrat Indonesia have once again showcased their creativity and innovation by developing an eco-friendly solar-powered car that is energy-efficient and forward-thinking. This groundbreaking project earned them the top prize at a prestigious national competition, proving their potential to lead Indonesia into a sustainable transportation future. The solar car combines cutting-edge technology with a sleek, futuristic design. It offers a practical solution to reduce dependence on fossil fuels, aligning with global efforts to combat climate change and promote green energy. This achievement not only highlights the students’ technical skills but also their commitment to environmental sustainability. The journey to success was a demanding one. From extensive research to meticulous design and engineering, the student team demonstrated remarkable dedication and teamwork. Every component of the solar car was carefully optimized to maximize performance, energy efficiency, and durability, reflecting their deep technical expertise and passion for innovation. Their victory in the national competition stands as a proud milestone for Universitas Teknokrat Indonesia. Competing against top universities from across the country, these students proved that Indonesian innovators are capable of producing world-class technology with positive impacts on society and the environment. This accomplishment sends a strong message that Indonesian youth are ready to take on global challenges with creative, sustainable solutions. Universitas Teknokrat Indonesia continues to support and nurture talents who will become future leaders in science, technology, and environmental stewardship. With this success, the university reaffirms its position as a hub of innovation and excellence, inspiring students to dream big and turn those dreams into reality.

Inspiring Young Minds: Mini Solar Car Training by Universitas Teknokrat Indonesia

Lecturers and students from Universitas Teknokrat Indonesia inspired the younger generation through a Mini Solar Car training at MAN 1 Bandar Lampung. This activity is part of a community service program aimed at fostering early interest in science and technology. During the training, students learned how solar panels work and had hands-on experience assembling solar-powered mini cars. In addition to technical skills, the activity encouraged creativity, teamwork, and problem-solving. This program also aims to raise awareness about renewable energy and environmentally friendly technology. Universitas Teknokrat Indonesia is proud to contribute to shaping a smart, eco-conscious, and innovative young generation ready to face the future!

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