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Optimal Coordinate Design of Multiple HVDC Modulation Controllers based on MIMO System Identification

机译:基于MIMO系统辨识的多个HVDC调制控制器的最优协调设计。

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Low frequency oscillation is becoming a serious bottleneck limiting power system stability enhancement, especially in the conditions of interconnections of regional networks. Because of the global properties, most of the units are involved in this problem. The controllers of these devices must be designed coordinately. In this paper, an optimal controller design approach is proposed for the applications in large scale power system. A special injection signal is used to excite the dynamics in certain frequency range, and then prediction error method (PEM) is employed to identify the reduced order system based on multiple inputs and outputs. Traditional optimal control techniques are improved to include the lead-lag blocks, so the popular supplementary damping controllers are compatible. Finally, this approach is applied in the design of two HVDC modulation controllers in China Southern Grid, and the results demonstrate the advantages.
机译:低频振荡正在成为限制电力系统稳定性增强的严重瓶颈,尤其是在区域网络互连的情况下。由于具有全局属性,因此大多数单位都涉及此问题。这些设备的控制器必须进行协调设计。本文针对大型电力系统中的应用提出了一种最优的控制器设计方法。使用特殊的注入信号来激发特定频率范围内的动力学,然后使用预测误差法(PEM)基于多个输入和输出来识别降阶系统。对传统的最佳控制技术进行了改进,使其包含超前-滞后块,因此兼容流行的辅助阻尼控制器。最后,将该方法应用于南方电网的两个高压直流输电调制控制器的设计,结果表明了其优越性。

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