有功功率损耗与光伏在中压配电网中的最大渗透:以越南Pleiku为例

Luan Nguyen, Nguyen Hoang Phuong, Lucaire Le, Long N. T. Tran, D. Vo, C. V. Vo
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引用次数: 0

摘要

越南是东南亚太阳能发展速度最快的国家,这得益于政府在过去十年中有吸引力的机制和政策。太阳能发电装机容量从2015年的105兆瓦大幅增加到2020年底的16504兆瓦。这种急剧增长给电力系统带来了积极和消极的影响;除了经济和环境方面的积极影响外,许多与电力质量和系统稳定性相关的研究也记录了许多负面影响。本研究旨在验证光伏高渗透水平对电力系统最重要的影响之一,即对系统有功功率损耗的影响;同时,结合不同的光伏侵彻场景,运用潮流分析模型,找出发生电压违例的最大侵彻极限。采用ETAP电力系统分析软件对越南嘉莱省普莱库市电网中压支路进行了案例分析。结果表明,适当增加光伏渗透率有助于降低电力系统的功率损耗。当渗透率超过系统功率的135%时,光伏高渗透率导致的反向潮流将导致大量损耗。
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Active power losses and the maximum penetration of PV in the MV distribution grid: Case-study of Pleiku, Vietnam
Vietnam is the country with the highest solar energy development rate in Southeast Asia thanks to the government’s attractive mechanisms and policies over the past decade. The installed capacity of solar power has increased dramatically from 105 MW in 201S to 16,504 MW by the end of 2020. This drastic increase has brought both positive and negative impacts to the power system; besides the positive impacts in terms of economics and the environment, many negative impacts have also been recorded in numerous studies related to power quality and system stability. This study was conducted to verify one of the most important impacts of high penetration level of photovoltaics (PV) into the power system, namely the impact on system’s active power loss; meanwhile, a power flow analysis model is used in combination with different PV penetration scenarios to find the maximum penetration limit where the voltage violations occur. A case-study was conducted for a medium voltage (MV) branch of Pleiku City power grid, Gia Lai Province, Vietnam using the ETAP power system analysis software. The results showed that an appropriate increase in PV penetration will help reduce power losses in the power system. When the penetration rate exceeds 135% of the system power, the reverse power flow resulting from the high penetration level of PV will lead to a large number of losses.
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