H∞Loop Shaping Based Robust Controller of Dynamic Voltage Restorer
Liu Niu1, Yao Gang1, Zhou Lidan1, Li Lixue2, Zheng Yihui2, Gao Rong3, Zhang Fu3, Han Yue3
1. Key Laboratory of Control of Power Transmission and Conversion Ministry of Education Shanghai Jiao Tong University Shanghai 200240 China 2. Center of Electrical & Electronic Technology Shanghai Jiao Tong University Shanghai 200240 China 3. Urban Power Supply Company Shanghai Municipal Electric Power Company Shanghai 200080 China
Abstract:Taking into account the high-frequency domain transformer noise, system model perturbation(typically in the high frequency domain), load disturbance and actuator saturation in the feedback system, system robustness requirement is needed for the dynamic voltage restorer(DVR). In this paper, loop shaping method is utilized in the standard feedback system to realize the robust design. Firstly, the pre- and post-compensation are selected to make the singular values of the nominal controlled system become the desired open-loop gain. Then the robust stabilization controller of the normalized coprime-type perturbed system is designed to be the final controller. When the controller is complex, the frequency-weighted Hankel norm approximation method is adopted to obtain a simple controller, which meets the robustness requirements. So the controller of DVR can achieve a compromise result between robust stability and system performance. Finally simulation results show that controller is effective and feasible.
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