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《Electric Power Construction》 2017-06
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Compound Control Strategy for Grid-Side Converter of PMSG-Based Wind Power Generation System

LI Hui;WANG Dan;LI Gengyin;LIU Chongru;ZHANG Ning;State Key Laboratory for Alternate Electrical Power System with Renewable Energy Sources (North China Electric Power University);State Pow er Economic Research Institute;State Key Laboratory of Control and Simulation of Pow er System and Generation Equipments (Department of Electrical Engineering,Tsinghua University);  
According to the nonlinear and strong coupling characters of the grid-side converter model of direct-driven permanent magnet synchronous generator( PM SG) based w ind pow er generation system,this paper proposes a compound control strategy w hich combines the non-smooth control and back-stepping control. Based on the nonlinear mathematical model of the grid-side converter in dq synchronous rotating coordinate system,the grid-side outer-loop of DC voltage control strategy is designed by using non-smooth control principle and the inner-loop of current control scheme is designed by using backstepping control method. In the aspect of outer-loop control,the DC voltage controller is designed by combining the finite-time feedback control method of non-smooth principle and the system disturbance estimation effect of extended state observer( ESO). The back-stepping control approach with additional disturbance compensation is applied in the inner-loop current control. By adopting ESO to estimate the uncertainties of system inner-loop caused by external disturbances,the back-stepping iterative control law is designed w ith the introduction of the estimated uncertainties for compensation. The appropriate Lyapunov function is established to obtain the principle of the inner-loop back-stepping current control,w hich makes the innerloop system meet the Lyapunov asymptotic stability condition. The simulation results show that, compared w ith the conventional PI linear control strategy,the presented compound control strategy can effectively improve the grid-integration dynamic response performance of PM SG-based w ind pow er generation system under the grid disturbance conditions.
【Fund】: 国家重点研发计划项目(2016YFB0900101)~~
【CateGory Index】: TM46;TM614
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【Citations】
Chinese Journal Full-text Database 10 Hits
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【Co-citations】
Chinese Journal Full-text Database 9 Hits
1 Zhang Lei;Wang Xiaosheng;Sun Kai;Zhou Hongwei;TEBA Xi'an Electric Technology Co.Ltd;State Key Lab of Control and Simulation of Power Systems and Generation Equipments Department of Electrical Engineering Tsinghua University;;Analysis of Grid-Side Reactance's Impact on Resonance Characteristic of Multi-Module Parallel Inverter System[J];电工技术学报;2017-13
2 HAN Zijiao;GAO Kai;WANG Chaobin;DONG Henan;TIAN Bowen;State Grid Liaoning Province Electric Power Company;Northeast Dianli University;;Zero sequence current effect mechanism analysis and suppression for the transformerless MMC-HVDC system[J];电力系统保护与控制;2017-12
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5 WANG Bin;GAO Shibin;HUANG Wen;JIANG Xiaofeng;QIU Zhongcai;School of Electrical Engineering,Southwest Jiaotong University;;Analysis on Harmonic Transmission Characteristics of Traction Power Supply System During Regenerative Braking of High Speed Train[J];电网技术;2014-02
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