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Design of a fixed-order robust controller using loop shaping method for damping inter-area oscillations in power systems

机译:使用环形成形方法设计固定稳健控制器,用于阻尼电力系统中区域间振荡

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The inter-area oscillations are common in power system and can occur due to the changes in the load or generation power especially in long transmission lines. This paper presents the design of a robust fixed-order loop shaping controller to damp out the inter-area oscillations and to enhance the stability of the power system. The proposed loop shaping method is based on the shaping of 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. The proposed method is robust with respect to multi-model uncertainty. Despite other robust controller design methods, the proposed approach deals with the entire system i.e. there is no need to reduce the system and still leads to a lower order controller. The proposed method is applied on the two area four machine system under different load conditions and different wind generations. The effectiveness and robustness of the proposed method in damping inter-area oscillations are validated using case studies.
机译:区域间振荡在电力系统常见的,可以发生由于特别是在长传输线路的变化在负载或发电电力。本文提出了一种鲁棒的固定阶环路整形控制器的设计以阻尼出区域间振荡,并且,以提高电力系统的稳定。所提出的回路成形方法是通过在频域中最小化实际和期望的开环传递函数之间的二次误差基于奈奎斯特图的开环传递函数的成形。该方法相对于多模型不确定性的鲁棒性。尽管其他的鲁棒控制器设计方法,与整个系统,即所提出的方法处理,没有必要的制度和仍然会导致降低到低阶控制器。所提出的方法应用于不同负载条件和不同的风世代下的两个区域4台机器系统。在阻尼区域间振荡所提出的方法的有效性和鲁棒性使用案例研究验证。

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