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首页> 外文期刊>Control Theory & Applications, IET >Hα control of single-machine infinite bus power systems with superconducting magnetic energy storage based on energy-shaping and backstepping
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Hα control of single-machine infinite bus power systems with superconducting magnetic energy storage based on energy-shaping and backstepping

机译:基于能量整形和反推的超导磁储能单机无限母线电力系统的Hα控制

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摘要

This article studies the H∞ control problem for single-machine infinite bus power systems with superconducting magnetic energy storage (SMES) via simultaneous design of generator excitation control and SMES control. In the control system design, the exciter dynamics and unknown external disturbances are considered for practical implementation in power systems. A new synthesis framework is proposed to address the robust control problem of power systems with SMES. First, from the energy perspective, the interconnection and damping assignment (IDA) approach is applied to improve the transient performance of power systems. Second, by introducing the idea of virtual control in the design process, the authors obtain the solution of a partial differential equation that is a crucial point and cannot be obtained by using the traditional IDA method. Third, in order to enhance the robustness of the closed-loop system, the authors study the H∞ control design that is challenging and difficult for power systems considering the above mentioned practical considerations. In addition, the authors use a novel equivalent generator model to avoid using unmeasurable infinite bus voltage. Simulation results also show the effectiveness and advantage of the proposed controller.
机译:本文通过发电机励磁控制和SMES控制的同时设计,研究了具有超导磁储能的单机无限母线电力系统的H∞控制问题。在控制系统设计中,考虑了励磁器动力学和未知的外部干扰,以便在电力系统中进行实际实施。提出了一种新的综合框架,以解决具有SMES的电力系统的鲁棒控制问题。首先,从能源角度出发,采用互连和阻尼分配(IDA)方法来改善电力系统的暂态性能。其次,通过在设计过程中引入虚拟控制的思想,作者获得了偏微分方程的解,这是一个关键点,使用传统的IDA方法无法获得。第三,为了增强闭环系统的鲁棒性,考虑到上述实际考虑,作者研究了对于电力系统而言具有挑战性和难度的H∞控制设计。此外,作者使用一种新颖的等效发电机模型来避免使用无法测量的无限母线电压。仿真结果也表明了所提出控制器的有效性和优势。

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