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Stability enhancement by VSC-HVDC with a supplementary frequency control strategy in case of system splits

机译:在系统分裂的情况下,通过VSC-HVDC以及附加的频率控制策略来增强稳定性

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Within the interconnected European power system power outages up to 3 GW can be handled without load shedding due to the load-frequency control design. Transient faults may cause system splits dividing it into weaker asynchronous subsystems. These possible fault events may result in power deficits exceeding the incident of dimensioning, which ultimately cause high gradients in the subsystems' frequency. Emerging HVDC links may contribute towards maintaining system stability. Due to their ability to transmit power between asynchronous systems a supplementary frequency control may be applied to support either of the connected systems. In this paper a suitable frequency controller for such events is implemented and the resulting system's behavior is analyzed. It is shown that the applied controller design successfully supports frequency stability of the system. In addition the effects of various input signals and the available transfer capacity of the HVDC is evaluated.
机译:在欧洲互连的电力系统中,由于采用了负载频率控制设计,因此可以在不减少负载的情况下处理高达3 GW的停电。暂态故障可能导致系统分裂,将其划分为较弱的异步子系统。这些可能的故障事件可能会导致功率不足,超过尺寸标注的事件,最终导致子系统频率出现高梯度。新兴的HVDC链路可能有助于维持系统稳定性。由于它们具有在异步系统之间传输功率的能力,因此可以应用辅助频率控制来支持所连接的系统中的任何一个。在本文中,针对此类事件实现了合适的频率控制器,并分析了所得系统的行为。结果表明,所应用的控制器设计成功地支持了系统的频率稳定性。此外,还评估了各种输入信号的影响以及HVDC的可用传输能力。

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