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Application of a novel stability control system for coordination of power flow control devices in the future GB transmission system

机译:新型稳定控制系统在未来国标输电系统中协调潮流控制装置的应用

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With increasing large-scale renewable energy sources in the UK and the need for adequate transmission capacity to accommodate the upcoming renewable generations, more state-of-the-art power flow control devices such as embedded High Voltage DC (HVDC) links will soon be commissioned in the GB HV transmission system to provide the additional capacity. An operational stability control system is required to ensure the coordinated control of power flow control devices in order to achieve better dynamic performance and stability. The focus of this paper is to demonstrate the capability of a multi-variable controller for the coordinated control using a non-parametric sampled regulator control design method. This method is practical for applications in large power systems since the complexity of the controller design does not increase with the size and dynamic of the power system. Also, this design method is demonstrated in two power system applications in this paper.
机译:随着英国大型可再生能源的增加,以及对满足未来可再生能源需求的足够输电能力的需求,更多的最新功率流控制设备,例如嵌入式高压直流(HVDC)链路将很快问世。在GB HV传输系统中进行调试以提供额外的容量。为了确保更好的动态性能和稳定性,需要一个运行稳定性控制系统来确保对潮流控制设备进行协调控制。本文的重点是演示使用非参数采样调节器控制设计方法进行协调控制的多变量控制器的功能。由于控制器设计的复杂性不会随电源系统的大小和动态而增加,因此该方法对于大型电源系统中的应用非常实用。此外,本文的两种电源系统应用中都演示了这种设计方法。

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