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Over-Frequency Mitigation Using Coordinated Generator Shedding Scheme in a Low Inertia Power System

机译:低惯性电力系统中采用协调发电机脱落方案的过频缓解

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The objective of this paper is to mitigate overfrequency problem of a low inertia power system using coordinated Over-Frequency Generator Shedding (OFGS) scheme. Recently, prolific amount of wind resources has been introduced in many power systems around the world. These variable speed wind power plants cannot contribute to system inertia unlike traditional synchronous generators. This leads to insufficient system inertia and the system can be termed as low inertia power system. If an area is transporting significant amount of power to adjacent area, then tripping of interconnection line can cause excess power thus to increase the system frequency in that area. This research work proposes a method to mitigate this problem using overfrequency generator tripping scheme. Results show that tripping wind turbine generator provides the best system response if single generator tripping scheme is undertaken. In case of double generator tripping scheme, wind-hydro combination tripping demonstrates the lowest frequency summit, lower Rate of Change of Frequency (ROCOF) and faster settling time. Finally, generators having different inertia constants are tripped to portray that generators having lower inertia constant should be tripped first.
机译:本文的目的是通过协调过频发电机脱落(OFGS)方案缓解低惯性电力系统的过频问题。最近,全世界许多电力系统中都引入了丰富的风能资源。与传统的同步发电机不同,这些变速风力发电厂无法促进系统惯性。这导致系统惯性不足,该系统可以称为低惯性动力系统。如果某个区域正在向相邻区域传输大量电能,则互连线的跳闸可能会导致多余的电能,从而增加该区域的系统频率。这项研究工作提出了一种使用过频发电机跳闸方案缓解此问题的方法。结果表明,如果采用单发电机跳闸方案,则风力发电机跳闸可提供最佳的系统响应。在双发电机跳闸方案的情况下,风水联合跳闸显示出最低的频率峰值,更低的频率变化率(ROCOF)和更快的建立时间。最后,使具有不同惯性常数的发电机跳闸,以描绘具有较低惯性常数的发电机应首先跳闸。

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