|国家科技期刊平台
首页|期刊导航|CSEE Journal of Power and Energy Systems|Reference-input-based Imaginary Axis Current Estimation Method for DQ Control Strategy in Single-phase PWM Converters

Reference-input-based Imaginary Axis Current Estimation Method for DQ Control Strategy in Single-phase PWM ConvertersOACSTPCDEI

中文摘要

For dq control strategies in single-phase pulse width modulation(PWM)converters,the-axis current must be created by imaginary axis current estimation(IACE)methods.The estimated error of the-axis current during the transient process causes d-q axis current loops to be incompletely decoupled,thereby affecting the dynamic performance of the current loop.The second-order generalized integrator(SOGI)method suffers from slow dynamic response.The fictive-axis emulation(FAE)method provides fast dynamic response but it is sensitive to circuit parameters.A reference-input(RI)-based IACE method is proposed to overcome the above shortcomings.According to the characteristic that the-axis current loop has no transient process,the-axis current is estimated by the d-q axis reference inputs.This is equivalent to introducing the-axis reference input as a feedforward term into the d-q axis current loop,so the parameter sensitivity problem is solved,and the parameter tuning is not needed.The proposed method can maintain good steadystate performance and significantly improve the dynamic performance of the current loop.Furthermore,it is straightforward and can be easily implemented in digital controllers.Comprehensive hardware-in-the-loop(HIL)experimental comparisons with the SOGI and FAE methods have been conducted to verify the correctness and effectiveness of the proposed RI-based IACE method.

Lin Peng;Lei Ma;Wensheng Song;Haoran Liu;

School of Electrical Engineering,Sichuan Polytechnic University,Deyang 618000,ChinaSchool of Electrical Engineering,Southwest Jiaotong University,Chengdu 611756,China

电子信息工程

dq controldynamic responseimaginary axis current estimation(IACE)single-phase PWM converter

《CSEE Journal of Power and Energy Systems》 2024 (005)

P.2079-2087 / 9

supported by the National Natural Science Foundation of China under Grant 61733015,62473322;High-Speed Railway Joint Funds of National Natural Science Foundation of China under Grant U1934204.

10.17775/CSEEJPES.2020.04220

评论