• 제목/요약/키워드: Carbon-Free Island

검색결과 13건 처리시간 0.024초

Autonomous Micro-grid Design for Supplying Electricity in Carbon-Free Island

  • Hwang, Woo-Hyun;Kim, Sang-Kyu;Lee, Jung-Ho;Chae, Woo-Kyu;Lee, Je-Ho;Lee, Hyun-Jun;Kim, Jae-Eon
    • Journal of Electrical Engineering and Technology
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    • 제9권3호
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    • pp.1112-1118
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    • 2014
  • In island and backcountry areas, electrical power is usually supplied by diesel generators. It is difficult for small scale diesel generators to have an economy of scale owing to the usage of fossil fuels to produce electricity. Also, there is a problem of carbon dioxide emissions that brings some environmental pollution to the entire region of the area. For solving those, this paper proposes a design method of autonomous micro-grid to minimize the fossil fuels of diesel generator, which is composed of diesel generator, wind turbine, battery energy storage system and photovoltaic generation system. The proposed method was verified through computer simulation and micro-grid operation system.

가파도 마이크로 그리드에서의 카본 프리(Carbon-Free)를 위한 1MVA급 배터리 에너지 저장시스템 적용 및 실증 (The Application and Verification of the 1MVA Battery Energy Storage System for Carbon-Free in Micro-Grid of Gapa Island)

  • 서영거;손의권;정병창;이정민;최영준
    • 전력전자학회:학술대회논문집
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    • 전력전자학회 2014년도 추계학술대회 논문집
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    • pp.93-94
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    • 2014
  • 본 논문의 주제는 가파도 마이크로 그리드에 적용한 1MVA급 배터리 에너지 저장시스템(BESS-Battery Energy Storage System)을 소개하는 것이다. 에너지 저장장치가 디젤발전기와의 연계 및 독립운전 하여 탄소 배출 없이(Carbon-Free) 가파도 전체 부하에 전원을 공급하는 실증 사례를 살핀다.

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전압형 MMC-HVDC에 의한 제주계통의 풍력한계용량 증대 방안 (A Strategy of Increasing the Wind Power Penetration Limit with VSC Type MMC-HVDC in Jeju Power System)

  • 이승민;김일환;김호민;채상헌;왓나우덩
    • 전력전자학회논문지
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    • 제20권6호
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    • pp.550-557
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    • 2015
  • The Jeju Special Self-Governing Province is currently promoting the "Carbon-free Island by 2030" policy, which requires the use of renewable energy instead of fossil fuel so that the island will have no carbon gases generated by 2030. To implement this policy, the island plans to build a wind power plant capacity of 1.09 GW in 2020; this wind power plant is currently ongoing. However, when wind power output is greater than the power demand of the island, the stability of Jeju Island power system must be prepared for it because it can be a problem. Therefore, this study proposes a voltage source-type MMC-HVDC system linked to mainland Korea to expand the wind power penetration limits of Jeju Island under the stable operation of the Jeju Island power system. To verify the effectiveness of the proposed scheme, computer simulations using the PSCAD/EMTDC program are conducted, and the results are demonstrated. The scenarios of the computer simulation consist of two cases. First, the MMC-HVDC system is operated under variable wind power in the Jeju Island power system. Second, it is operated under the predicted Jeju Island power system in 2020.

HESS가 연계된 상명풍력발전단지의 모델링과 해석 (Modeling and Analysis of Sangmyeong Wind Farm with HESS)

  • 신현;김일환
    • 전력전자학회:학술대회논문집
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    • 전력전자학회 2019년도 전력전자학술대회
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    • pp.422-423
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    • 2019
  • In accordance with the Carbon-Free Island by 2030 policy of Jeju Special Self-Governing Province, renewable energy sources are increasing in Jejudo Island. Due to the intermittent output characteristics of wind turbines, one of the renewable energy sources, which can cause unbalanced system conditions between the demand load and the power generation of Jejudo Island. The Korea Power Exchange limits the output of wind turbines for stabilizing the Jeju power system. Therefore, this paper proposes a method to supply a limited output of Sangmyeong Wind Farm in Jeju Power system to Energy Storage System(ESS) and Water Electrolysis Device(WED). The voltage and frequency fluctuation of the Jeju power system is checked accordingly. The simulation results are performed using the PSCAD/EMTDC program.

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전압형 HVDC에 의한 제주계통의 풍력한계용량 증대 방안 (An Strategy of Increasing the Wind Power Penetration Limit with VSC-HVDC in Jeju Power System)

  • 이승민;채상헌;김호민;김일환
    • 전력전자학회:학술대회논문집
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    • 전력전자학회 2015년도 전력전자학술대회 논문집
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    • pp.461-462
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    • 2015
  • The government on Jeju Special Self-governing Province has a policy named 'Carbon Free Island Jeju by 2030'. The main purpose in this policy is to install wind power system with the total capacity of 1.35 GW by 2020. When the demand load on Jeju Island power system is lower than entire output power, a lot of dump power will be produced from the large-scale wind farms. It will be able to cause the wind power limit on Jeju Island. Consequently, the additional power facility must be installed to ensure stable power system operation in Jeju Island and increase wind power limit. From this point, this paper proposes the installation of MMC-HVDC, which can supply power in real time in the desired direction. The effectiveness of MMC-HVDC based on measured data of Jeju Island power system will be verified by using PSCAD/EMTDC simulation program.

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CVCF 인버터 기반의 Micro-grid에 있어서 과도상태 운용알고리즘에 관한 연구 (A Study on the Transient Operation Algorithm in Micro-grid based on CVCF Inverter)

  • 이후동;최성식;남양현;손준호;노대석
    • 한국산학기술학회논문지
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    • 제19권9호
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    • pp.526-535
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    • 2018
  • 최근, 도서지역에서는 $CO_2$ 배출의 저감을 위하여, 디젤발전기의 가동률을 줄이고 신재생에너지전원의 비중을 높여, 계통을 안정적으로 운용할 수 있는 방안들이 연구되고 있다. 특히, Carbon free를 목표로 하는 도서지역용 Micro-grid에서는 CVCF(constant voltage & constant frequency) 인버터를 기반으로 운용되는데, CVCF 인버터용 배터리의 SOC(state of charge) 상태에 따라, 계통의 부하소비 보다 신재생에너지전원의 출력이 큰 경우에 CVCF 인버터 내에서 발생하는 에너지 Sinking에 의하여, 배터리측 전압이 급격히 상승하여, 인버터의 과전압 보호동작에 의해 CVCF 인버터가 급격하게 탈락되어 계통에 정전이 발생하는 문제점이 일어날 수 있다. 따라서, 본 논문에서는 CVCF 인버터를 기반으로 한 도서지역용 Micro-grid의 안정적인 운용을 위하여, 에너지 Sinking 시에 발생 가능한 CVCF 인버터의 탈락을 사전에 방지하는 과도상태 운용알고리즘을 제안한다. 또한, PSCAD/EMTDC의 모델링을 이용하여, 제안한 알고리즘을 적용한 Micro-grid의 과도상태 운용특성을 분석한 결과, 배터리의 전압과 SOC에 따라 CVCF 인버터가 탈락하는 과도상태를 사전에 방지할 수 있어, 본 논문의 유용성을 확인하였다.

제주도 지역별 대용량 태양광발전소들의 여름 피크타임 기여도 연구 (Contribution of Large-Scale PV Plants in the Respective Region of the Jeju Island to Electric Power during Summer Peak Times)

  • ;고석영;사공준;권훈;이개명
    • 전기학회논문지
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    • 제66권12호
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    • pp.1873-1878
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    • 2017
  • Both the introduction of the Renewable Energy Portfolio Standard (RPS) system into the electric energy market in 2012 and a decrease in the cost of constructing photovoltaic (PV) power plants have been increasing the number of MW PV plants in South Korea. Jeju Island is located at the center of three nations, South Korea, China and Japan, and its provincial government declared in 2012 that the island will be a clean region where greenhouse gases are not emitted by 2030. The Jeju provincial government is now doing its best to install PV plants and wind farms to realize a carbon-free island. In this study we investigated contribution of MW PV plants to the power of the electric grid during summer peak times on Jeju Island. Mt. Halla the highest mountain in South Korea, is located at the center of Jeju Island, and we divided the island into four regions and carried out analyses of a total of 24 PV plants. The average contribution of the PV plants in the respective region to electric power of Jeju Island during summer peak times was investigated and compared with those of the other regions. The best average contribution during the 12.5% maximum load period was obtained from the PV plants in the western region, and the value was 33% during 2015 and 2016.

제주지역 풍력발전 및 태양광발전의 전력계통 부하기여 분석 (Analysis of the Load Contribution of Wind Power and Photovoltaic Power to Power System in Jeju)

  • 명호산;김형철;강남호;김영환;김세호
    • 한국태양에너지학회 논문집
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    • 제38권1호
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    • pp.13-24
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    • 2018
  • As part of the "Carbon free Island 2030" policy, the local government of Jeju Island is currently working to reduce carbon through renewable energy supply. However, renewable energy is difficult to predict due to intermittent characteristics. If the share of renewable energy increase, it is difficult to plan of supply of electricity to grid due to that characteristic of renewable. In this paper analyze the fluctuation rate and the capacity credit of wind power and PV to find out how much wind power and PV contribute to supply of electricity of power system in Jeju. As a result mean value of variation rate of wind power and PV is about 3%, 5% and capacity credit is about 10% and 2% respectively.

독립형 하이브리드발전시스템 최적설계에 관한 연구 (A Study on Optimization Design of Off-grid Hybrid Power Generation System)

  • 정문선;문채주;장영학;박태식;이숙희
    • 한국전자통신학회논문지
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    • 제10권2호
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    • pp.247-252
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    • 2015
  • 전력계통이 연계되지 않는 국내 유인도서의 대부분의 전력은 디젤발전기를 통해 공급하고 있으나 도서지역의 경우 유류비가 내륙지역에 비해 비싸고 이를 운송하는 것이 어렵다. 이러한 이유로 최근 자연자원을 활용하여 신재생에너지원을 도입을 하고 있지만 자연환경에 의존하는 신재생에너지원은 안정적인 전력공급이 어렵기 때문에 기존 디젤발전과 신재생에너지가 포함된 하이브리드시스템을 통해 전력을 공급하는 것이 필요하다. 본 논문은 풍력, 태양광, 배터리 및 디젤엔진 등 에너지저장장치를 포함한 하이브리드시스템의 타당성 연구결과를 설명한다. 이 연구 대상은 전력계통에 연계되지 않은 전라남도 서거차도이며, 최소비용을 투자하여 탄소배출을 최소화하는 최적 용량의 하이브리드시스템 구성을 제안한다. 이 시스템에 대한 경제정인 적합성은 HOMER 프로그램을 사용하여 분석하였다.

진도~제주간 직류연계 사업을 위한 변환소 건설 개요 (The Introduction of Converter Station Construction for HVDC Link Project between Jindo and Jeju)

  • 이종석;문봉수;강원탁;김경석
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2009년도 제40회 하계학술대회
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    • pp.357_358
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    • 2009
  • According to the 4th BPE(Basic Plan for long-term Electricity Supply and Demand), Electricity demand of Jeju island in 2012 will be reached to 682MW. Jeju island will be faced with severe shortage of electricty, also needed to find transport route to supply green energy which will be made from "Carbon free island" energy policy toward land at that time. For that reason, The plan which construct 400MW size HVDC connection line was decided for potential supply stabilization and transportation of green energy. KEPCO organized special construction office not only to observe the successful project completion which aims 2011 December but also to build up professional manpower. KEPCO is putting spur to the HVDC project these days. Construction site of converter stations has been already confirmed and contracts of cable, converter have done as per turn-key early this year. On this report, we would like to discuss about project scheme, main characteristics of system, and the furture progress plan of "Jindo~Jeju HVDC construction project expecially converter station part" which is being pushed by KEPCO.

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