DOI QR코드

DOI QR Code

에너지자립을 위한 도시전력량과 태양광 발전량 비교분석

Comparative Analysis of Urban Electricity and Solar Power Generation for Energy Independence

  • Kim, Kang-Min (Dept. of Architectural Engineering, Andong University of Science) ;
  • Na, Wook-Jung (Dept. of Fire Safety, Andong University of Science)
  • 투고 : 2022.03.11
  • 심사 : 2022.08.25
  • 발행 : 2022.11.30

초록

Korea's energy consumption is the 8th largest electricity consuming country in 2020, and it is necessary to diversify energy supply and demand. Presently, the demand for Renewable Energy is a steadily increasing due to eco-friendly policies, and the solar power system among Renewable Energy is increasing by more than 30% every year. However, due to the rapid increase in the supply of the solar power system and the differences of the mandatory supply amount and weighting between the government and the power generation licensee by the institutional change, we should prepare a realization plan. Also, environmental damage such as farmland damage, landslide, flood is consecutively occurring due to the indiscriminate installation of the solar power system. Therefore, due to the variability in the electric power supply of Renewable Energy, it is necessary to verify the efficiency and to conduct field empirical analysis research considering the geographical and environmental aspects of the domestic. So, in this study, we preferentially select the target city where the solar power system is actively installed and conduct the empirical analysis by comparing the power ratio between the city's power consumption and the amount of power generated by the solar power system and maximize the efficiency of the solar power system through optimal location analysis by using ARCGis and will contribute to the stable use of electricity to the planned site of the solar power system.

키워드

과제정보

이 연구는 2022년도 정부(교육부)의 재원으로 한국연구재단의 지원을 받아 수행된 기초연구사업임(2020R1I1A3068406)

참고문헌

  1. Kim, Y.H. (2018). Economic Analysis and Investment Strategy of PV Power Generation Business, Thesis, Paichai University.
  2. Kim, J. (2017). Extended Electrical Energy Storage Systems for Power Trading Services between Home in Smart Grid. Ph. D. Dissertation, Soongsil University.
  3. Kim J.N., & Um, D.Y. (2015). Solar power location analysis for improving the efficiency of solar photovoltaic. Proceeding of Annual Conference of The Korean Society of Survey, Geodesy, Photogrammetry, and Cartography, 303-305
  4. Korea Power Exchange. (2020). Electricity market statistics, http://www.kpx.or.kr
  5. Korea Energy Agency Renewable Energy Center. (2018). Renewable Energy Supply Statistics, http://www.knrec.or.kr/
  6. Lee, G.R., & Lee, W.H. (2015). Solar power plant location analysis using gis and analytic hierarchy process, Journal of the Korean Association of Geographic Information Studies, 18(4). 6-10
  7. Lee, S.M. (2016). A Study on Fine Dust Quantification of Solar Cell. Department of Mechanical Engineering, Thesis, Kumoh University of Technology
  8. Ministry of Trade, Industry and Energy. (2016). Korea Energy Agency Renewable Energy Center, Renewable energy white paper.
  9. Ministry of Trade, Industry and Energy (2017). Renewable Energy 3020 Implementation Plan (Proposed).