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Robust Damping of iNTER-AREA oSCILLATIONS in AC-MTDC grids using H∞ Mixed-sensitivity approach

机译:使用H∞混合灵敏度方法在AC-MTDC电网中对iNTER-AREA振荡进行鲁棒阻尼

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This paper demonstrates robust damping of interarea oscillations in an AC-Multiterminal DC (MTDC) grid following major contingencies like the outage of a converter pole and line outage. Damping controller design based on H∞ mixed-sensitivity formulation in the Linear Matrix Inequality (LMI) framework has been performed. Emphasis has been placed on achieving robustness in the design by incorporating proper weighing filters for disturbance rejection and control energy minimization. The proposed controller uses feedback signals from remote locations and modulates the real power reference of two converter poles in a converter station of the asymmetric bipolar MTDC grid, which is integrated with AC systems. A 6-machine 3-area system and a 16-machine, 5-area system were used as the AC test systems. Robustness in damping performance in case of converter outage and AC line outage was successfully achieved by the designed controllers in both the test systems.
机译:本文演示了在发生诸如变压器磁极中断和线路中断等重大突发事件之后,交流多端子直流(MTDC)电网中区域间振荡的强大阻尼。在线性矩阵不等式(LMI)框架中,基于H∞混合灵敏度公式进行了阻尼控制器设计。通过并入适当的称重滤波器以消除干扰和控制能量最小化,重点已放在实现设计的稳健性上。所提出的控制器使用来自远程位置的反馈信号,并调制与AC系统集成的非对称双极MTDC电网的换流站中两个换流器极的有功功率参考。 6机3区系统和16机5区系统用作AC测试系统。通过在两个测试系统中设计的控制器,成功实现了变流器和交流电源中断时的阻尼性能鲁棒性。

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