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Design and real time implementation of LMI based robust damping controllers for power systems

机译:基于LMI的电力系统鲁棒阻尼控制器的设计与实时实现

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This paper demonstrates the design and implementation of a robust damping controller for damping the low frequency (0.1-2 Hz) electromechanical modes in an inter-connected power system. The robust control design is formulated as H驴 norm optimization problem and the solution is sought numerically using LMIs. This allows additional pole-placement constraints to be imposed to ensure that the time domain specifications are met beside robust stabilization. Due to relatively large size and other peculiarities of the resulting controller, real time implementation is often a concern in practice. Therefore, implementation and performance validation of such a controller in real time is presented is this paper. One issue, however, is the availability of the actual system for validating the performance of the controllers in real time. Hence, a real time dynamic system emulator has been developed as a test bench to validate the designed control algorithm in a hardware-in-loop configuration
机译:本文展示了一种用于阻尼在连接的电力系统中的低频(0.1-2 Hz)机电模式的稳健阻尼控制器的设计和实现。强大的控制设计配制为H∞范数优化问题,并使用LMIS在数值上寻求解决方案。这允许施加额外的极点放置约束,以确保在稳定的稳定期间满足时域规范。由于所得控制器的尺寸相对较大和其他特点,实时实施通常是实践中的担忧。因此,提出了这种控制器实时的实现和性能验证是本文的实时。但是,一个问题是实际系统的可用性,用于实时验证控制器的性能。因此,实时动态系统仿真器已被开发为测试台,以验证硬件环路配置中的设计控制算法

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