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Multi Objective Gain Tuning Approach for Time Delayed Automatic Generation Control

机译:多目标增益调谐方法延迟自动生成控制

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Use of open channel communication in automatic generation control (AGC) of interconnected power systems leads to time delay in the secondary frequency control loop. Such time delayed AGC of a power system can lead to unstable operation. This paper presents an insight on how gain tuning approaches need to be changed from single objective to multi objective in order to achieve stable operation as well as fast frequency and tie power regulation. The analysis is performed on a single area hydro power system. The effect of secondary controller gains on conventional gain tuning objective function, integral squared error (ISE), and on the communication delay margin has been shown in this work. The paper concludes that while a particular set of proportional integral (PI) secondary controller gain can give least ISE value; the same can give rise to stability issues due to reduction in delay margin. It is discussed that a trade-off is needed between improvement in ISE and improvement in delay margin. Thus, the paper proposes to use multi objective optimization for PI controller gains where one objective is to minimize the ISE while the other is to maximize the delay margin.
机译:在互联电源系统的自动生成控制(AGC)中使用开放通道通信导致次级频率控制回路中的时间延迟。电力系统的这种延迟AGC可能导致不稳定的操作。本文介绍了有关如何从单一目标更改的增益调整方法,以实现稳定的运行以及快速频率和领带功率调节,了解如何从单一目标改变。在单个区域水电系统上进行分析。辅助控制器增益对传统增益调谐目标函数,整体平方误差(ISE)以及通信延迟余量的影响已经显示在本工作中。本文得出结论,虽然特定的比例积分(PI)二级控制器增益可以提供最小值;由于延迟余量的减少,同样可以引起稳定性问题。讨论了在ISE的改进和延迟边缘的改进之间需要进行权衡。因此,本文提出用于PI控制器增益的多目标优化,其中一个目的是最小化ISE,而另一个目标是最大化延迟余量。

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