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首页> 外文期刊>Journal of Power and Energy Engineering >Design of a Fixed-Order Robust Controller to Damp Inter-Area Oscillations in Power Systems
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Design of a Fixed-Order Robust Controller to Damp Inter-Area Oscillations in Power Systems

机译:抑制电力系统区域间振荡的固定阶数鲁棒控制器的设计

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摘要

This paper presents the design of a robust fixed-order H∞ controller to damp out the inter-area oscillations and to enhance the stability of the power system. The proposed H∞ approach is based on shaping the open-loop transfer function in the Nyquist diagram through minimizing the quadratic error between the actual and the desired open loop transfer functions in the frequency domain under linear constraints that guarantee robustness and stability. The proposed approach is robust with respect to multi-model uncertainty closed-loop sensitivity functions in the Nyquist diagram through the constraints on their infinity norm. The H∞ constraints are linearized with the help of a desired open-loop transfer function. The controller is designed using the convex optimization techniques in which the difference between the open-loop transfer function and the desired one is minimized. The two-area four-machine test system is selected to evaluate the performance of the designed controller under different load conditions as well as different levels of wind penetrations.
机译:本文提出了一种鲁棒的固定阶数H∞控制器的设计,该控制器可抑制区域间振荡并增强电力系统的稳定性。所提出的H∞方法基于在奈奎斯特图中通过在保证稳健性和稳定性的线性约束下最小化频域中实际和所需开环传递函数之间的二次误差,从而对Nyquist图中的开环传递函数进行整形。所提出的方法对于Nyquist图中的多模型不确定性闭环敏感度函数具有无穷范数的约束,因此具有鲁棒性。 H∞约束在所需的开环传递函数的帮助下线性化。使用凸优化技术设计控制器,其中开环传递函数和所需传递函数之间的差异最小。选择两区域四机测试系统来评估设计的控制器在不同负载条件下以及不同水平的风速下的性能。

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