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Damping of power oscillations induced by photovoltaic plants using distributed series-connected FACTS devices

机译:使用分布式串联FACTS装置的光伏电站引起的功率振荡的阻尼

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This paper demonstrates the capability of distributed series-connected Flexible AC Transmission Systems (FACTS) devices in damping power oscillations. Large power systems have resonant frequencies which result from the electro-mechanical power balance equations of synchronous generators connected to the power network. Transient events that affect power flow, like the loss of a transmission line, switching of loads, changes in renewable energy output can excite these resonant frequencies, referred to as modes, leading to power oscillations within the network. This paper proposes a power oscillation damping (POD) controller using multiple Static Series Synchronous Compensators (SSSC) connected in series on a single transmission line. The power oscillation frequencies in New York Power Authority's (NYPA) three-bus power system network are identified using the Matrix Pencil method, and a controller is designed to block the most prominent frequencies from them. The controller is implemented in PSCAD to damp power oscillations in NYPA's network and its performance while damping power oscillations is recorded.
机译:本文演示了分布式串联柔性交流输电系统(FACTS)设备在抑制功率振荡方面的能力。大型电力系统具有谐振频率,该谐振频率是由连接到电网的同步发电机的机电功率平衡方程得出的。影响功率流的瞬态事件,例如传输线的损耗,负载的切换,可再生能源输出的变化,可能激发这些谐振频率(称为模式),从而导致网络内的功率振荡。本文提出了一种在单个传输线上串联使用多个静态串联同步补偿器(SSSC)的功率振荡阻尼(POD)控制器。纽约电力局(NYPA)三总线电源系统网络中的电源振荡频率是使用Matrix Pencil方法识别的,并且设计了一个控制器来阻止这些频率中最突出的频率。该控制器在PSCAD中实现,以阻尼NYPA网络中的功率振荡,并在记录阻尼功率振荡的同时降低其性能。

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