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Distributed generation based on renewable energy providing frequency response ancillary services

机译:基于可再生能源的分布式发电,提供频率响应辅助服务

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Distributed Generation (DG) based on renewable energy resources has become extremely attractive due to their significant ability to reduce greenhouse gas emissions and decrease the dependency on fossil fuels. However, in modern power systems these DGs should participate with the main conventional power plants and other system's equipments in the power system security and reliability by providing the essential ancillary services. Renewable energy resources such as wind and solar could provide power system ancillary services by using controlled battery storages. In an attempt to answer these issues, this paper studies the feasibility of DGs based on wind and solar energies to provide ancillary services to medium-scale micro-grid, namely frequency response ancillary service. A generic model of IEEE distributed generation system with 13 buses will be used as a test network in this investigation, with the total generation from conventional power plants representing 50% of total generated power and the remaining 50% is renewable power. The test system will be simulated by using the commercial DIgSILENT Power Factory to assess technical feasibility of the contribution of DGs to frequency response, and results obtained will be discussed.
机译:基于可再生能源的分布式发电(DG)已具有极大的吸引力,因为它们具有减少温室气体排放和减少对化石燃料的依赖的强大能力。但是,在现代电力系统中,这些DG应通过提供基本的辅助服务,与主要的常规电厂和其他系统的设备一起参与电力系统的安全性和可靠性。风能和太阳能等可再生能源可以通过使用受控的电池存储来提供电力系统辅助服务。为了回答这些问题,本文研究了基于风能和太阳能的分布式发电为中型微电网提供辅助服务(即频率响应辅助服务)的可行性。本次调查将使用具有13条总线的IEEE分布式发电系统的通用模型作为测试网络,传统发电厂的总发电量占总发电量的50%,其余50%为可再生能源。该测试系统将通过使用商用DIgSILENT电力工厂进行仿真,以评估DG对频率响应的贡献的技术可行性,并讨论获得的结果。

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