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Designing anti-windup PI controller for LFC of nonlinear power system combined with DSTS of nuclear power plant and HVDC link

机译:设计非线性电力系统LFC防风PI控制器与核电站DSTS和HVDC链路相结合

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摘要

This paper proposes anti-windup proportional integral controller to deal with generation rate constraint problem during a frequency load control. An interconnected two-area power system is used by considering nonlinear constraints for thermal and hydro units combined with dish-Stirling solar thermal system (DSTS) in the first area, the nuclear power plant in the second area, and HVDC link in both areas. The imperialist competitive algorithm was used for optimal adjustment of parameters of the proposed controller. Simulations are performed in different scenarios. The proposed control scheme is compared with conventional PI controller; the effect of the presence of DSTS and HVDC link is investigated, and finally the robustness of the proposed controller against uncertain load is studied. The comparisons are made by using various performance factors of the system response such as overshoot, settling time and rise time. The results show a significant improvement in the system response and reduction in oscillation frequency of the areas and the power of the tie-line.
机译:本文提出了在频率负载控制期间处理了消耗比例积分控制器来处理生成率约束问题。通过考虑热和水电装置的非线性约束来使用互连的两扇形电力系统在第一区域,第二个区域的核电站和两个区域中的HVDC链路结合在第一个区域中的核电站和HVDC连接。帝国主义竞争性算法用于最佳地调整所提出的控制器的参数。模拟在不同的场景中执行。将所提出的控制方案与传统PI控制器进行比较;研究了DST和HVDC链路的存在的影响,最后研究了所提出的控制器对不确定载荷的鲁棒性。通过使用系统响应的各种性能因素如过冲,建立时间和上升时间来进行比较。结果表明,系统响应和振荡频率降低的显着改善以及系列的电力。

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