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A Reliability Impact and Assessment of Distributed Generation Integration to Distribution System
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作者 Atthapol Ngaopitakkul Chaichan Pothisarn +3 位作者 sulee bunjongjit Boonlert Suechoey Chaiyo Thammart Auttarat Nawikavatan 《Energy and Power Engineering》 2013年第4期1043-1047,共5页
The main purpose of this paper is to study the reliability due to the employment of distributed generations (DG) integrated to distribution system. The system under this study is from Provincial Electricity Authority ... The main purpose of this paper is to study the reliability due to the employment of distributed generations (DG) integrated to distribution system. The system under this study is from Provincial Electricity Authority (PEA) that is a part of Thailand’s distribution system. Data of geographic information systems (GIS) including the distance of distribution line and location of load that are parameter of PEA is simulated using digital simulation and electrical network calculation program (DIgSILENT) to analyze the impact of reliability with the installing DG into the distribution system. The system average interruption frequency index (SAIFI), the system average interruption duration index (SAIDI) and interruption cost are assessed as index of reliability by comparing the SAIFI, SAIDI, and interruption cost between the base case (no DG) and the case that DG connected to the distribution system. The results can be summarized by focusing on location of DG, the capacity of DG, the size of load, and the distance of load which are factors able to impact to SAIFI, SAIDI, and interruption cost. 展开更多
关键词 RELIABILITY DISTRIBUTED Generation INTERRUPTION COST Distribution System SAIFI SAIDI
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Study of Coordination between Protective Devices Comprising Distributed Generation in Distribution System
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作者 Sujarit Muangchareon Atthapol Ngaopitakkul +3 位作者 sulee bunjongjit Monthon Leelajindakrairerk Chaichan Pothisarn Auttarat Nawikavatan 《Energy and Power Engineering》 2013年第4期584-588,共5页
This paper proposes to study the coordination of protective devices when 8 MW synchronous generators are interconnected to distribution System of PEA. The coordination between recloser and drop out fuse is investigate... This paper proposes to study the coordination of protective devices when 8 MW synchronous generators are interconnected to distribution System of PEA. The coordination between recloser and drop out fuse is investigated in this paper. The three-phase fault is simulated using digital simulation and electrical network calculation program (DIgSILENT). The results are shown that the short circuit current from substation is reduced comparing to the distribution system without DG connected. It causes to protective device coordination inconsistently, so the maintenance will be delayed more than expected. 展开更多
关键词 COORDINATION DISTRIBUTED GENERATION Protective DEVICE RENEWABLE Energy
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