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Adaptive Control with SSNN of UPFC System for the Compensation of Active and Reactive Power

机译:UPFC系统的SSNN自适应控制,用于有功和无功补偿

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The focus of this study is the effectiveness of the controller's Unified Power Flow Controller UPFC with the choice of a control strategy. This Unified Power Flow Controller (UPFC) is used to control the power flow in the transmission systems by controlling the impedance, voltage magnitude and phase angle. This controller offers advantages in terms of static and dynamic operation of the power system. It also brings in new challenges in power electronics and power system design. To evaluate the performance and robustness of the system, we proposed a hybrid control combining the concept of identification neural networks with conventional regulators and with the changes in characteristics of the transmission line in order to improve the stability of the electrical power network. With its unique capability to control simultaneously real and reactive power flows on a transmission line as well as to regulate voltage at the bus where it is connected, this device creates a tremendous quality impact on power system stability. The result which has been obtained from using MATLAB and SIMULINK software showed a good agreement with the simulation result.
机译:本研究的重点是通过选择控制策略来实现控制器的统一潮流控制器UPFC的有效性。该统一潮流控制器(UPFC)用于通过控制阻抗,电压幅值和相角来控制传输系统中的潮流。该控制器在电力系统的静态和动态操作方面具有优势。这也给电力电子和电力系统设计带来了新的挑战。为了评估系统的性能和鲁棒性,我们提出了一种混合控制,将识别神经网络的概念与常规调节器相结合,并与传输线的特性变化相结合,以提高电力网络的稳定性。该设备具有独特的能力,可同时控制传输线上的有功和无功功率以及调节连接它的总线上的电压,从而对电力系统的稳定性产生巨大的质量影响。使用MATLAB和SIMULINK软件获得的结果与仿真结果吻合良好。

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