• 제목/요약/키워드: Solar PV economic analysis

검색결과 29건 처리시간 0.02초

건물용 태양광발전 시스템 성능 및 경제성 평가 프로그램 개발 연구 (Software Development on Power and Economic Analysis of Photovoltaic System for Building Application)

  • 윤종호;신우철;박재완
    • 한국태양에너지학회 논문집
    • /
    • 제28권1호
    • /
    • pp.1-8
    • /
    • 2008
  • The aim of this study is to develop the photovoltaic simulation program, called SimPV, which can Predict hourly based power generation of various PV modules and conduct an intensive economic analysis with Korean situation. To establish the reliability of the PV simulation results, we adopt the PV calculation algorithm of TRNSYS program of which verification has already well approved. Extensive database for hourly weather data of Korean 16 cities, engineering data for PV system and building load profiles are established. Case study on the 2.5kW roof integrated PV system and economic analysis are presented with the developed program.

제로에너지 솔라하우스(KIER ZeSH)의 에너지 자립도 및 경제성 분석 (The Study on the Energy self-sufficiency and Economic Analysis of KIER Zero Energy Solar House)

  • 정선영;백남춘;유창균;윤응상;윤종호
    • 한국신재생에너지학회:학술대회논문집
    • /
    • 한국신재생에너지학회 2010년도 추계학술대회 초록집
    • /
    • pp.64.1-64.1
    • /
    • 2010
  • In this study, the energy and economic analysis of KIER Zero Energy Solar House (KIER ZeSH) was carried out. KIER ZeSH was designed and constructed in the end of 2009 for the purpose of more than 70% energy self-sufficiency in total load as well as less than 20% of additional construction cost. The several building energy conservation technologies like as super insulation, high performance window, wast heat recovery system, etc and renewable energy system. The renewable heating and cooling system is a kind of solar thermal system combined with geo-source heat pump as a back-up device. The capacity of 3.15kW solar BIPV system was also installed on the roof. The measurement by monitering system of ZeSH was conducted for one year from November 2009 to October 2010. The energy self-sufficiency and economic analysis were conducted based on the this monitering result. As a result, the energy self sufficiency is about 83% which is higher than that of the target and the payback period is 11 years.

  • PDF

태양광에너지 중심의 신재생에너지 기술경제학 모델링 연구 (The technical-economic study of solar PV and renewable energy)

  • 이문수;이민진;이영희
    • 한국신재생에너지학회:학술대회논문집
    • /
    • 한국신재생에너지학회 2011년도 춘계학술대회 초록집
    • /
    • pp.136.1-136.1
    • /
    • 2011
  • An energy modeling analysis method currently has been considered as a new approach for energy policy research, because the importance of renewable energy use has been emphasized more and more. This study used RETScreen model as a clean energy decision making methodology for adaptation to climate change and elimination of various pollutions. This modeling method includes five step standard analysis; energy model, cost analysis, GHG analysis, financial analysis, and sensitivity & risk analysis and it also assesses both conventional and modern energy sources and technologies. This methodology for the photovoltaic(PV) energy modeling is used to evaluate the energy production, financial performance and GHG emissions reduction of photovoltaic projects. In addition, the PV application systems are classified into three basic applications; On-grid system, Off-grid system and water pumping system. This study assesses the renewable energy techno-economic modeling method with the feasibility analysis result of 10 MW PV power plant in Abu Dhabi in United Arab Emirates. Furthermore this study stresses the importance of renewable energy model research by applying to domestic PV power plant which is now in preparation.

  • PDF

An Economic Evaluation under Thailand Feed in Tariff of Residential Roof Top Photovoltaic Grid Connected System with Energy Storage for Voltage Stability Improving

  • Treephak, Kasem;Saelao, Jerawan;Patcharaprakiti, Nopporn
    • International Journal of Advanced Culture Technology
    • /
    • 제3권1호
    • /
    • pp.120-128
    • /
    • 2015
  • In this paper, Residential roof top photovoltaic system with 9.9 kW design is proposed. The system composed of 200 Watts solar array 33 panels connecting in series 10 strings and parallels 3 strings which have maximum voltage and current are 350 V and 23.8 A. The 10 kW sinusoidal grid-connected inverter with window voltage about 270-350 is selected to convert and transfer DC Power to AC Power at PCC (Point of Common Coupling) of power system following to utility standard. However the impact of fluctuation and uncertainty of weather condition of PV may decrease the voltage stability and voltage collapse of power system. In order to solve this problem the energy storage such 120 V 1200 Ah battery bank and 30 kVAR capacitor are designed for voltage stability control. The other expensed for installing the system such battery charger, cable, accessories and maintenance cost are concerned. The economic analysis by using investment from money loan with interest about 7% and use own money which loss income of deposit about 3% are calculated as 671,844 and 547,044 for PV system with energy storage and non energy storage respectively. The solar energy from PV is about 101,616 Bath per year which evaluated by using the value of $5kWh/m^2/day$ from average peak sun hour (PSH) of the Thailand and 6.96 Bath/kWh of Feed in Tariff Incentive. The payback periods of four scenarios are proposed follow as i) PV system with energy storage and use loan money is 15 years ii) PV system with no energy storage and use loan money is 10 years iii) PV system with energy storage and use deposit money is 9 years iv) PV system with energy storage and use deposit money is 7 years. In addition, the other scenarios of economic analysis such no FIT support and other type of economic analysis such NPV and IRR are proposed in this paper.

폐태양광 재활용 사업의 경제성 분석 및 정책적 시사점 (Economic analysis of Solar PV panel recycling project)

  • 모정윤;김민지
    • 한국산학기술학회논문지
    • /
    • 제21권5호
    • /
    • pp.585-591
    • /
    • 2020
  • 최근 정부정책에 따른 원자력 발전의 감축과 신재생에너지의 급속한 보급확대에 따라 국내 태양광 발전 설치가 급격히 확대되고 있다. 이러한 태양광 발전 설비의 급속한 증가는 필연적으로 신재생에너지 산업에서의 폐기물 증가로 이어진다. 그러나 현재 신재생에너지 분야에서 발생한 폐기물에 대한 국내 사후 관리 시스템 구축에 대한 정책 논의는 미비하다. 동 연구는 태양광 패널 재활용 산업의 비용 및 편익을 추정하고 한국의 태양광 폐기물 재활용 정책에 대한 시사점을 도출하고자 한다. 동 연구의 결과에 따르면, 태양광 패널 재활용 사업의 실행 기간이 10년일 경우, 재활용 프로젝트의 수익성이 매우 낮다는 결론이 도출된다. 반면 재활용 프로젝트의 기간이 20년으로 연장될 경우, 2030년 이후 국내 태양광 폐기물의 총 용량이 크게 증가하여 규모의 경제로 인해 프로젝트의 경제 효율성이 충분히 높아질 수 있다는 결론을 도출하였다. 태양광 패널 재활용 사업의 경우 단기적으로는 경제적 효율성이 매우 낮기 때문에 민간 기업의 자발적 사업 참여를 기대하기 어렵다. 따라서 재활용 사업의 경제성 향상 및 관련 산업 활성화를 위한 다양한 정부의 정책마련이 긴요하다. 이를 위해서는 i) 폐태양광 패널의 재활용을 위한 법률 제정, ii) 태양광 패널 폐기물 모니터링 및 비용관리를 위한 협회 지정, iii) 태양광 패널 재활용 관련 R & D 수립 및 재활용과 관련된 다양한 비즈니스 모델 개발 등의 정책 마련이 필요하다.

태양광 모듈 출력 보상을 위한 마이크로컨버터 시제품 동작 특성 분석 (Characteristics Analysis of Proto-type Microconverter for Power Output Compensation of Photovoltaic Modules)

  • 김지현;김주희;이정준;박종성;김창헌
    • Current Photovoltaic Research
    • /
    • 제10권4호
    • /
    • pp.133-137
    • /
    • 2022
  • The economic feasibility of a photovoltaic (PV) system is greatly influenced by the initial investment cost for system installation. Also, electricity generation by PV system is highly important. The profits competitiveness of PV system will be maximized through intelligent operation and maintenance (O&M). Here, we developed a microconverter which can maximize electricity generation from PV modules by tracking the maximum power point of PV modules, and help efficient O&M. Also, the microconverter mitigates current mismatch caused by shading, hence maximize power generation. The microconverters were installed PV modules and demonstrated through the field tests. Power outputs such as voltage, string current were measured with variuos weather environments and partial shadings. We found that PV modules with the microconvertors shows 12.05% higher power generation compared to the reference PV modules.

도서용 태양광/내연기관 발전시스템 경제성 비교 분석 (Economic Analysis on PV/Diesel Power System for Remote Islands' Electrification)

  • 이만근;정명웅;진영택
    • 태양에너지
    • /
    • 제18권3호
    • /
    • pp.147-151
    • /
    • 1998
  • Several PV-diesel hybrid systems were built in isolated islands in Korea, where they are far from the inland to be supplied the electric power to a utility level from it. A lot of efforts has been concentrated to find a cost-effective electric supply system with higher reliability and minimum maintenance when compared with a diesel generator. For this purpose, an autonomous PV-diesel hybrid system with multi-channel remote monitoring system was investigated to supply electric power under minimum operating cost and maintenance in a small isolated island. In this report, the economic analysis was performed for comparison with photovoltaic system and diesel generator by computer simulation. And it was proven that a PV system is more cost-effective than an internal combustion engine for the remote island with less than 150 households. Especially, in the case of islands with less than 50 households, the initial construction cost of the PV system is comparable to and its operating cost is about 70% less than the diesel generator.

  • PDF

한국 RE100 기업의 자가소비 태양광 발전 경제적 비율 분석 (Self-Consumption Solar PV Economic Rate Analysis for RE100 Companies in Korea)

  • 이종의;김경남
    • Current Photovoltaic Research
    • /
    • 제11권4호
    • /
    • pp.134-143
    • /
    • 2023
  • Efforts are being made to respond to global warming. Interest in and demand for the private sector-led RE100 campaign is also increasing. Self-built solar power generation, one of the implementation tools for RE100, is not expanding. However, it can be an economical means of implementation in the long run. In this study, we intend to analyze the impact on the optimal ratio of self-solar power generation using HOMER simulation. OPR defines the optimal solar power generation ratio and looks into what changes there are in the optimal solar power ratio when self-power consumption increases and external power purchase price changes. As a result, the optimal rate of self-solar power generation has a low impact even if self-power consumption increases. As the external power unit price increases, the optimal ratio increases, and at a power unit price of 100 KRW/kWh, OPR is 24%; at 200 KRW/kWh OPR is 31%; and at 300 KRW/kWh OPR is 34%. This shows that the electricity price replaced during the life cycle has a high impact on the economic feasibility of solar power generation. However, when the external power unit price reached a certain level, the increase in OPR decreased. This shows that it is difficult for domestic companies to achieve RE100 based on the economic feasibility of solar energy alone. Therefore, efforts are needed to supply renewable energy in the public sector.

서울시 한강교량의 태양광발전시스템 적용 시 경관조명 에너지 절약에 관한 경제성 분석 및 고찰 (An Economic Analysis and Consideration on the Application of Photovoltaic System for Bridge Nightscape Energy Savings at Han River in Seoul)

  • 박윤민;홍성관;최안섭
    • 조명전기설비학회논문지
    • /
    • 제25권1호
    • /
    • pp.42-49
    • /
    • 2011
  • PV(Photovoltaic) system is environmentally friendly power system using solar energy in renewable energy. PV system compared to other renewable energy power generation systems is relatively easy to install, so the dissemination is increasing worldwide. Especially, BIPV(Building Integrated Photovoltaic) is a system that PV modules are installed on the building and use renewable energy. But this system is difficult to apply due to the shadow of adjacent buildings and limited installation. In this study, payback period is calculated by Retscreen 2010, that is an economic assessment software of renewable energy, on applied to the bridge of PV system. As results, this study aims at actively considering the application.

태양광 에너지저장장치(ESS) 경제성 분석 및 최적 용량 평가 (Economy Analysis and Optimized Capacity Evaluation of Photovoltaic-Related Energy Storage System)

  • 이영훈;성태현
    • 한국산업융합학회 논문집
    • /
    • 제25권2_2호
    • /
    • pp.209-218
    • /
    • 2022
  • The purpose of this study is to analyze an economic assessment of PV-ESS systems based on the power generation performance data of solar power (PV) operating in domestic area, and to calculate the optimal capacity of the energy storage system. In this study, PVs in Gyeonggi-do, Jeollabuk-do, and Gyeongsangbuk-do were targeted, and PVs in this area were assumed to be installed on a general site, and the research was conducted by applying weights based on the facility's capacity. All the analysis was conducted using the actual amount of KPX transactions of PVs in 2019. In order to calculate the optimal capacity of PCS and BESS according to GHI, PV with a minimum/maximum/central value was selected by comparing the solar radiation before the horizontal plane between three years (2017-2019) of the location where PV was installed. As a result of the analysis, in Gyeonggi-do, if the REC weight decreases to 3.4 when there is no change in the cost of installing BESS and PCS, it is more economical to link BESS than PV alone operation of PV. In Jeollabuk-do, it was analyzed that if the REC weight was reduced to 3.6, it was more likely to link BESS than PV operated alone. In Gyeongsangbuk-do, it was analyzed that if the REC weight was reduced to 3.4, it was more likely to link BESS than PV operated alone.