• Title/Summary/Keyword: photovoltaic equipment

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Development of Maintenance-Service Model for Small Photovoltaic Equipment (소형 태양광발전설비의 유지관리 서비스 모델 개발)

  • Kang, Seok-Hwa;Park, Byeong-Hun;Choei, Jong-Won;Kim, Jae-Yeob
    • Proceedings of the Korean Institute of Building Construction Conference
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    • 2015.05a
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    • pp.234-235
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    • 2015
  • In South Korea, small photovoltaic equipment is increasingly adopted in more detached houses on the constant basis. With this broader use of small photovoltaic equipment, its systematic maintenance becomes all the more necessary. However, photovoltaic facility maintenance has been concentrated solely on large-scale solar energy generation plants in the country while hardly covering smaller facilities. In this research, the JEM rule and extant maintenance company services were analyzed to develop a proper maintenance model for small photovoltaic equipment. The maintenance service procedures designed herein are as follows: A small photovoltaic equipment user chooses a maintenance company and signs a contract. Once a contract is made, the Korea Energy Management Corporation provides a certain kind of incentive to the company. The company provides maintenance service to the user and receives a service fee. If such a maintenance service model is in place, small photovoltaic equipment efficiency is expected to increase and users could receive systematic maintenance services. Also the new creation of small photovoltaic equipment maintenance service would form a new market to generate more jobs for the society.

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Variation Analysis of Power Generation according to Maintenance of Photovoltaic Equipment (태양광 발전설비의 유지관리에 따른 발전량 변화 분석)

  • Park, Byeong-Hun;Choei, Jong-Won;Kim, Jae-Yeob
    • Proceedings of the Korean Institute of Building Construction Conference
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    • 2015.11a
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    • pp.79-80
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    • 2015
  • With the government's support for new and renewable energy, photovoltaic equipment has rapidly been supplied. However, compared to supply rate, maintenance has not supported enough and relevant research has not much conducted. Therefore, the purpose of this study is to analyze maintenance effectiveness of photovoltaic equipment. What is the most important in maintenance effectiveness is a rise in power generation. It was estimated that if photovoltaic equipment for detached houses is maintained well, power generation increases by 4.0% at least, and by 6.5% on average. As a result, it was analyzed that it is necessary to maximize the effectiveness of the government's budget investment through well maintenance of photovoltaic equipment for detached houses.

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Induced Production Analysis for Photovoltaic Power Generation Equipment in Korea using Input-Output Table 2009 (산업연관표 2009를 이용한 태양광발전설비산업의 생산유발효과분석)

  • Kim, Yoon-Kyung
    • New & Renewable Energy
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    • v.8 no.1
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    • pp.8-17
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    • 2012
  • The Korean government pushed ahead various policies to disseminate photovoltaic (PV), wind power, small hydro, bio-fuel, etc. Renewable energy system (RES) budget of the Korean government increased from 118 billion won of 2003 to 876.6 billion won of 2010. The R&D budgetary supports for RES increased by 6.8 times in the period 2003-2010. It is necessary to confirm RES budget expenditure that renewable energy promotion policy makes good performance evaluated in quantity level. This paper made Input-Output Table 2009 contains photovoltaic power generation equipment industry as a dependent sector and analyzed induced production effect by demand of photovoltaic power generation equipment industry. From the empirical analysis result, additional demand in photovoltaic power generation equipment induced 1.932 times of induced production in Korea. Each of industry sector has positive induced production from the additional demand in photovoltaic power generation equipment. Renewable energy promotion in photovoltaic power generation is considered together with industry policy as the option to sustain economic growth.

Maintenance-Effectiveness Analysis of Photovoltaic Equipment for Detached Houses (주택용 태양광발전설비의 유지관리 효과 분석)

  • Park, Byeong-Hun;Choi, Jong-Won;Kim, Jae-Yeob
    • Journal of the Korea Institute of Building Construction
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    • v.16 no.4
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    • pp.359-365
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    • 2016
  • With the government's support using new and renewable energy, photovoltaic equipment has been rapidly supplied. However, compared to supply rate, maintenance has not supported enough and relevant research has not much conducted. Even though large power plant facilities have been maintained well, small equipment for detached houses has been rarely maintained. Therefore, the purpose of this study is to analyze maintenance effectiveness of photovoltaic equipment for detached houses. It was analyzed that photovoltaic equipments were merely maintained. What is the most important in maintenance effectiveness is increase of power generation. It was estimated that if photovoltaic equipment for detached houses is maintained well, power generation increases by 6.5% at least. That produces the same effect as the additional supply of photovoltaic equipment to 9,700 households. As a result, it is necessary to maximize the effectiveness of the government's budget investment through well maintenance of photovoltaic equipments.

Supply Method of Photovoltaic Equipment for Detached Houses Using Payback Period Analysis (투자비회수기간 분석에 의한 단독주택용 PV설비 보급방안)

  • Kang, Seok-Hwa;Kim, Jae-Yeob
    • Proceedings of the Korean Institute of Building Construction Conference
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    • 2014.05a
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    • pp.154-155
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    • 2014
  • Small photovoltaic equipment spreads to the detached house owing to the support of government. This study analyzed the payback period of small photovoltaic equipment, and presented a plan of spreading PV equipment by electricity consumption according to the results. The results of payback period analysis showed that a household of 500kWh or above in the average monthly electricity consumption could produce an economic effect without the subsidies of government, and a household of 300kWh or above could secure economical efficiency in case of receiving the subsidies of government and municipality. However, it was shown that the economic effect was not large in case of a household of less than 250kWh. Therefore, the analysis showed that it would be necessary to be supported by additional subsidies or to develop a new supporting policy with regard to a household of less than 250kWh.

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Analysis of Maintenance Conditions for Small Photovoltaic Equipment (소형 태양광발전설비의 유지관리 실태 분석)

  • Kang, Seok-Hwa;Kim, Jae-Yeob
    • Proceedings of the Korean Institute of Building Construction Conference
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    • 2014.11a
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    • pp.115-116
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    • 2014
  • This study investigated power generation of photovoltaic equipment at detached houses. The study estimated monthly mean generation according to maintenance conditions that included module cleaning, inspection into generation, cleaning of module and photovoltaic generation. At analysis upon generation, households with periodical module cleaning and inspection into generation, clean module and good generation conditions had high generation. 20-years of PV equipment life varied much depending upon maintenance conditions. Users should keep module clean and inspect generation regularly and put PV equipment at the place with good solar radiation.

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The Technique of Installing Floating Photovoltaic Systems (수상태양광의 시공기술에 관한 실증연구)

  • Choi, Young-Kwan;Yi, Jong-Seok
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.14 no.9
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    • pp.4447-4454
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    • 2013
  • In October 2011, a commercialized 100kW class floating photovoltaic system positive plant was installed at Hapcheon dam a multi-purpose reservoir the first time ever in the nation. Floating photovoltaic system differs in water float, mooring device and underwater cable process from land photovoltaic system. As for land and building photovoltaic power generation equipments, many installation cases and skilled experiences are available, and thus installation is not difficult. However, commercial power generation floating photovoltaic system, which is attempted for the first time in the nation, requires to be designed and installed through a series of processes like technical review and verification of data by process in comparison with similar cases. The structure of floating photovoltaic system, an equipment for float photovoltaic module and other electrical equipment, is required to withstand weather environments like wind or typhoon etc and yet not affect water quality negatively, and for implementation of this system, construction efficiency and economy etc should be considered comprehensively. In this paper, the techniques of installing floating photovoltaic structure, mooring device, underwater cable, electrical equipment and remote monitoring control system are explained. The 100kW floating PV system is operating with 15% average capacity factor.

A Study on the Reliability Assesment of Solar Photovoltaic and Thermal Collector System (태양광열 시스템의 신뢰성 평가에 관한 연구)

  • Park, Tae-Kook;Bae, Seung-Hoon;Kim, Sang-Kyo;Kim, Seon-Min;Kim, Dae-Hwan;Eom, Hak-Yong;Lee, Keun-Hui
    • New & Renewable Energy
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    • v.16 no.4
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    • pp.49-64
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    • 2020
  • Photovoltaic and Thermal collector (PV/T) systems are renewable energy devices that can produce electricity and heat energy simultaneously using solar panels and heat exchangers. Since PV/T systems are exposed to the outdoors, their reliability is affected by various environmental factors. This paper presents a reliability test for a PV/T system and evaluates the test results. The reliability assessment entails performance, environment, safety, and life tests. The factor that had the greatest influence on the life of the system was the hydraulic pressure applied to the heat exchanger. A test was conducted by repeatedly applying pressure to the PV/T system, and a reliability analysis was conducted based on the test results. As a result, the shape parameter (β) value of 5.6658 and the B10life 308,577 cycles at the lower 95% confidence interval were obtained.

Operationg Characteristics of 50kW Utility Interactive Photovoltaic System (목포대학교 기숙사 30[kW]급 태양광발전시스템 발전특성)

  • Moon, Chae-Joo;Lim, Joung-Min;Cheang, Eui-Heang;Park, Sang-Jin;Park, Gui-Yeol
    • 한국태양에너지학회:학술대회논문집
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    • 2008.11a
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    • pp.53-56
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    • 2008
  • A photovoltaic panel is a device that, through the photovoltaic effect, converts luminous energy into electric energy. Photovoltaic generation system used infinity of solar energy, cost of fuel is needless and there in no air pollution or waste occurrence. This paper summarizes the results of these efforts by offering a photovoltaic system structure in 30[kW] large scale applications installed in Mokpo National University dormitory roof. The status of photovoltaic system components, are inter-connection and safety equipment monitoring system will be summarized as this article. This describes configuration of utility interactive photovoltaic system which generated power supply for dormitory. In this paper represent 30[kW] utility photovoltaic system examination result.

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User Requirement Analysis of Photovoltaic Equipment for Detached Houses (단독주택용 태양광발전설비의 사용자 요구사항 분석)

  • Kang, Seok-Hwa;Kim, Jae-Yeob
    • Journal of the Korea Institute of Building Construction
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    • v.14 no.6
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    • pp.623-629
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    • 2014
  • The purpose of this study is to analyze user requirements of photovoltaic generating facilities for detached houses. For the analysis, 202 households that installed photovoltaic generating facilities to conduct a survey. According to the survey results, users mainly demanded 'Reduction in self-burden amount' and 'Maintenance Services.' In addition, when conducting 'Education for photovoltaic generating facilities', they highly wanted to participated in it. Results on the installation status of photovoltaic generating facilities are as follows: Of locations where photovoltaic generating facilities are installed, the most households installed them on the roof, 54%. As for the angle in which photovoltaic module is installed, the range of $25{\sim}35^{\circ}$ was the most common and in the case of installation direction, southern exposure accounted for the rate of 93%. The monthly average generation of households surveyed is approximately 320kWh. Research on technology and policy to address user requirements shown in this study is deemed necessary in the future.