Design and Technical Consideration of Underground Power Feeder in CBSUA Sipocot Campus
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Keywords

Underground Power Feeder Design
Technical Consideration
Power Feeder
Underground Network

How to Cite

BORAZON, O. J. (2023). Design and Technical Consideration of Underground Power Feeder in CBSUA Sipocot Campus: Underground Distribution Network. Journal of Engineering and Emerging Technologies, 2(1), 57–68. https://doi.org/10.52631/jeet.v2i1.297

Abstract

The transition towards a world-class university and the establishment of a smart campus demand a holistic approach to infrastructure development, particularly in the realm of power distribution. As Central Bicol State University aspires to become a beacon of excellence in education while embracing principles of resilience and sustainability, the design and technical considerations of an underground power feeder system emerge as imperative focal points. This research investigates the intricate requirements and challenges associated with upgrading the distribution line to accommodate the escalating load demand inherent in the pursuit of academic and technological advancements.

Through a comprehensive analysis of existing infrastructure, anticipated load projections, and technological advancements, this study formulates a strategic blueprint for the implementation of an underground power feeder network. Drawing upon principles of electrical engineering, urban planning, and sustainability, the research navigates the complexities of designing a system that not only meets current demands but also anticipates future growth while adhering to the principles of resilience and sustainability inherent CBSUA's vision.

The research is the recognition of the transformative potential of a robust underground power feeder system in supporting the multifaceted needs of a modern educational institution. By enhancing reliability, minimizing downtime, and optimizing energy distribution, the proposed system aligns with the school commitment to fostering a dynamic and conducive learning environment. Moreover, the research underscores the imperative of sustainability in infrastructure development, advocating for the integration of renewable energy sources, energy-efficient technologies, and eco-friendly materials in the design and implementation of the underground power feeder system. By mitigating environmental impact and reducing carbon footprint, CBSUA endeavors to set a precedent for sustainable campus development in the global educational landscape.In conclusion, this research contributes to the realization of CBSUA's vision for a world-class university and smart campus by offering a comprehensive framework for the design and technical considerations of an underground power feeder system. By prioritizing resilience, sustainability, and adaptability, the proposed system serves as a cornerstone for advancing academic excellence while fostering environmental stewardship in the pursuit of educational innovation

     
https://doi.org/10.52631/jeet.v2i1.297
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