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POWER SYSTEM DYNAMIC STABILIZER DESIGN USING TURNING GREY PREDICTION PID CONTROL

机译:基于转向灰色预测PID控制的电力系统动态稳定器设计。

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摘要

This paper proposed a new approach to design the power system stabilizers (PSSs) by utilizing the Turning Grey Prediction PID Controller. The design of a PSS can be formulated as an optimal linear regulator control problem; however, implementing this technique requires the design of estimators. This increases the implementation and reduces the reliability of control system. To deal with this problem, we employ the Turning Grey Prediction PID Control to find control signal of each generator. The Grey Prediction adopts the forecasting information of the output state variables to control power system behavior, and the forecasting step size decided by Fuzzy systems. Then, due to their simple structrure and robust performace, the PID (proportional-integral-derivative) controllers are most commonly used controllers in industrial process control. Hence, the proposed method integrates the grey system and the PID controller can reduce the oscillation and enhance the dynamic stability of the power system. Finally, the advantages of the proposed method are verified through a detailed simulation of a multimachine power system.
机译:本文提出了一种利用转向灰色预测PID控制器设计电力系统稳定器(PSS)的新方法。 PSS的设计可以表述为最佳的线性调节器控制问题。但是,实施此技术需要设计估算器。这增加了实现并降低了控制系统的可靠性。为了解决这个问题,我们采用了Turning Gray Prediction PID控制来找到每个发电机的控制信号。灰色预测采用输出状态变量的预测信息来控制电力系统的行为,并由模糊系统确定预测步长。然后,由于其简单的结构和强大的性能,PID(比例-积分-微分)控制器是工业过程控制中最常用的控制器。因此,所提出的方法将灰色系统与PID控制器集成在一起,可以减少振荡并增强电力系统的动态稳定性。最后,通过对多机动力系统的详细仿真,验证了所提出方法的优点。

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