A control strategy of repetitive control without inductorance decoupling was proposed to address the problem of high total harmonic distortion(THD)rate of the network-side current caused by the reduced stability of th...A control strategy of repetitive control without inductorance decoupling was proposed to address the problem of high total harmonic distortion(THD)rate of the network-side current caused by the reduced stability of the rectifier module of the DC charging pile under weak grid as well as the dead zone and nonlinearity of switching devices during charging.Firstly,the parallel repetitive control was constructed in the inner current loop,and the proportional-integral(PI)+repetitive controller based on parallel structure was designed.For system compensation,a second-order low-pass filter was selected to correct the system,and the network-side current harmonics were actively suppressed without increasing the filtering device,which effectively improves the quality of grid-connected current.Secondly,based on the synthetic vector method,the controller parameters were designed to realize the elimination of main pole by establishing two synchronous rotation coordinate system vector differential equations,so as to realize the inductanceless decoupling to cope with the influence of network-side inductance fluctuation on the stability of the control system under weak grid.By theoretical analysis and simulation,the proposed control strategy was embedded into the self-developed digital signal processor for the rectifier module of DC charging pile,simulated dynamic and steady-state operation experiments were conducted,and comparative analysis was performed to prove the feasibility of the proposed control strategy.展开更多
基于电压源型整流器(VSR)与电压源型逆变器(VSI)整合而成的VSR-VSI双PWM变换器已在电梯能量回馈系统中得到应用。本文围绕VSR-VSI系统的直流母线电压可控与能量可双向流动的特点,首先阐述了基于VSR-VSI电梯永磁同步电机驱动系统在dq坐...基于电压源型整流器(VSR)与电压源型逆变器(VSI)整合而成的VSR-VSI双PWM变换器已在电梯能量回馈系统中得到应用。本文围绕VSR-VSI系统的直流母线电压可控与能量可双向流动的特点,首先阐述了基于VSR-VSI电梯永磁同步电机驱动系统在dq坐标系下的PI双闭环控制结构与参数设计方法,分析了VSR-VSI系统直流母线电压与并网电流存在谐波畸变的机理,在此基础上提出了基于PI+谐振(PI plus resonant,PIR)调节器的VSR电流内环改进控制策略以抑制并网电流谐波,最后利用仿真结果验证了上述理论分析的准确性与有效性。展开更多
基金supported by National Natural Science Foundation of China(No.61903291)Shaanxi Province Key R&D Program(No.2022GY-134)。
文摘A control strategy of repetitive control without inductorance decoupling was proposed to address the problem of high total harmonic distortion(THD)rate of the network-side current caused by the reduced stability of the rectifier module of the DC charging pile under weak grid as well as the dead zone and nonlinearity of switching devices during charging.Firstly,the parallel repetitive control was constructed in the inner current loop,and the proportional-integral(PI)+repetitive controller based on parallel structure was designed.For system compensation,a second-order low-pass filter was selected to correct the system,and the network-side current harmonics were actively suppressed without increasing the filtering device,which effectively improves the quality of grid-connected current.Secondly,based on the synthetic vector method,the controller parameters were designed to realize the elimination of main pole by establishing two synchronous rotation coordinate system vector differential equations,so as to realize the inductanceless decoupling to cope with the influence of network-side inductance fluctuation on the stability of the control system under weak grid.By theoretical analysis and simulation,the proposed control strategy was embedded into the self-developed digital signal processor for the rectifier module of DC charging pile,simulated dynamic and steady-state operation experiments were conducted,and comparative analysis was performed to prove the feasibility of the proposed control strategy.
文摘基于电压源型整流器(VSR)与电压源型逆变器(VSI)整合而成的VSR-VSI双PWM变换器已在电梯能量回馈系统中得到应用。本文围绕VSR-VSI系统的直流母线电压可控与能量可双向流动的特点,首先阐述了基于VSR-VSI电梯永磁同步电机驱动系统在dq坐标系下的PI双闭环控制结构与参数设计方法,分析了VSR-VSI系统直流母线电压与并网电流存在谐波畸变的机理,在此基础上提出了基于PI+谐振(PI plus resonant,PIR)调节器的VSR电流内环改进控制策略以抑制并网电流谐波,最后利用仿真结果验证了上述理论分析的准确性与有效性。