Proceedings of the Korean Institute of Information and Commucation Sciences Conference (한국정보통신학회:학술대회논문집)
- 2017.05a
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- Pages.735-737
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- 2017
Design of an Off Grid type High efficiency Solar charging system Using MATLAB/Simulink
MATLAB/Simulink를 이용한 오프그리드형 고효율 태양광 충전 시스템 설계
- Gebreslassie, Maru Mihret (Pukyong National University) ;
- kim, Min (Pukyong National University) ;
- Byun, Gi-sig (Pukyong National University) ;
- Kim, Gwan-hyung (Tongmyung University)
- 미흐렛 가아브레슬라세 마루 (부경대학교) ;
- 김민 (부경대학교) ;
- 변기식 (부경대학교) ;
- 김관형 (동명대학교)
- Published : 2017.05.31
Abstract
An Off grid or remote solar electric systems are an energy supply to our home or to our companies without the utility of Grid at all. Off grid solar systems are very important for those who live in remote locations especially for developing countries where getting the electric grid is extremely expensive, inconvenient or for those who doesn't need to pay a monthly bill with the electric bill in general. The main critical components of any solar power system or renewable energy harvesting systems are the energy storage systems and its charge controller system. Energy storage systems are the essential integral part of a solar energy harvesting system and in general for all renewable energy harvesting systems. To provide an optimal solution of both high power density and high energy density at the same time we have to use hybrid energy storage systems (HESS), that combine two or more energy storage technologies with complementary characteristics. In this present work, design and simulation we use two storage systems supercapacitor for high power density and lithium based battery for high energy density. Here the system incorporates fast-response supercapacitors to provide power to manage solar smoothing and uses a battery for load shifting. On this paper discuss that the total energy throughout of the battery is much reduced and the typical thermal stresses caused by high discharge rate responses are mitigated by integrating supercapacitors with the battery storage system. In addition of the above discussion the off grid solar electric energy harvesting presented in this research paper includes battery and supercapacitor management system, MPPT (maximum power point tracking) system and back/boost convertors. On this present work the entire model of off grid electric energy harvesting system and all other functional blocks of that system is implemented in MATLAB Simulink.