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Investigating the response of synchronous machines loss-of-field protection in power systems supporting dynamic reactive power compensation as ancillary service

机译:调查支持动态无功补偿的电力系统中同步机磁场保护的响应作为辅助服务

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This paper aims to demonstrate that generation stations providing dynamic reactive power compensation services to support voltage according to grid code requirements, affect the performance of the conventional synchronous generator loss-of field protection. In this context, investigations are conducted on a power station connected to the grid through a transmission line. During a complete loss-of field fault in a generator, voltage supporting ancillary services are provided by a large-scale aggregated wind park, which is tapped to the transmission line. The simulation results show that the wind park has an impact on the loss-of-field relay, mainly by delaying or accelerating the tripping time. Several critical factors, such as the generators pre-fault loading, the rated power output of the wind park, the connection point of the wind park, as well as the controller parameters of the synchronous and wind turbine generators have been investigated in the simulation analysis conducted.
机译:本文旨在证明,为基准电压提供动态无功补偿服务的生成站,影响了传统同步发电机磁场保护的性能。 在这种情况下,在通过传输线路连接到网格的电力站上进行调查。 在发电机中完全丢失的现场故障期间,由大规模聚集的风园提供辅助服务的电压,其被挖掘到传输线。 仿真结果表明,风园对现场损失的继电器产生影响,主要是通过延迟或加速绊倒时间。 在模拟分析中研究了几种关键因素,如发电机预载,风园的额定功率输出,风园的连接点,以及同步和风力涡轮发电机的控制器参数。 实施。

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