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Dynamic stability improvement of a hydraulic turbine generating unit using an optimal PID controller

机译:使用最优PID控制器改善水轮机发电机组的动态稳定性

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A new optimal proportional integral derivative (PID) controller is designed in this work in order to achieve dynamic stability for a Hydro Turbine Generating (HTG) unit under various operating conditions. The proposed controller minimizes a Quadratic Performance Measuring Index (QPMI) in order to find the optimal Proportional Integral Derivative (PID) parameters via a Linear Quadratic Regulator (LQR) method. The results obtained were compared with that of a traditional optimal PID controller, which uses conventional root-locus method to tune the PID parameters. The comparison between the two controllers is done with respect to time domain responses which show superior performance of the proposed optimal PID controller in terms of rise time, settling time and maximum overshoot in comparison to traditional optimal controller.
机译:在这项工作中设计了一种新的最佳比例积分微分(PID)控制器,以实现水轮机发电(HTG)单元在各种运行条件下的动态稳定性。为了通过线性二次调节器(LQR)方法找到最佳的比例积分微分(PID)参数,建议的控制器将二次性能测量指标(QPMI)最小化。将获得的结果与传统的最佳PID控制器进行比较,后者使用常规的根轨迹方法来调整PID参数。在时域响应方面完成了两个控制器之间的比较,与传统的最佳控制器相比,时域响应显示了所提出的最佳PID控制器在上升时间,稳定时间和最大过冲方面的优越性能。

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