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Design of an ANN tuned adaptive UPFC supplementary damping controller for power system dynamic performance enhancement

机译:用于提高电力系统动态性能的ANN调谐自适应UPFC辅助阻尼控制器的设计

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摘要

A supplementary damping controller for a unified power flow controller (UPFC) is designed for power system dynamic performance enhancement. To maintain a good damping characteristic over a wide range of operating conditions, the gains of the UPFC supplementary damping controller are adapted in real time, based on online measured transmission line loadings (active and reactive power flows). To speed up the online gain adaptation process, an artificial neural network is designed. A major feature for the proposed adaptive UPFC supplementary damping controller is that only physically measurable variables (active and reactive power flows over the transmission line) are employed as inputs to the adaptive controller. To demonstrate the effectiveness of the proposed adaptive UPFC supplementary damping controller, computer simulations are performed on a power system subject to a three-phase fault. It is concluded from the simulation results that the proposed adaptive UPFC supplementary damping controller can yield satisfactory dynamic responses over a wide range conditions. The electromechanical mode with an oscillation frequency around 0.78 Hz has been effectively damped by the proposed damping compensators.
机译:设计了用于统一潮流控制器(UPFC)的辅助阻尼控制器,以增强电力系统的动态性能。为了在宽范围的工作条件下保持良好的阻尼特性,UPFC辅助阻尼控制器的增益会根据在线测量的传输线负载(有功和无功功率)实时调整。为了加快在线增益适应过程,设计了一个人工神经网络。所提出的自适应UPFC辅助阻尼控制器的主要特征在于,仅将物理上可测量的变量(传输线上的有功和无功功率)用作自适应控制器的输入。为了证明所提出的自适应UPFC辅助阻尼控制器的有效性,对遭受三相故障的电力系统进行了计算机仿真。从仿真结果可以得出结论,所提出的自适应UPFC辅助阻尼控制器可以在宽范围的条件下产生令人满意的动态响应。所提出的阻尼补偿器有效地阻尼了振荡频率约为0.78 Hz的机电模式。

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