基于级联H桥多电平拓扑的有源电力滤波器(Active Power Filter,APF)的研究越来越广泛。本文针对级联型APF系统的动态性能进行了研究。首先分析了电网电流反馈控制动态响应慢的原因和理想情况时的动态响应,在此基础上提出了一种提高系统...基于级联H桥多电平拓扑的有源电力滤波器(Active Power Filter,APF)的研究越来越广泛。本文针对级联型APF系统的动态性能进行了研究。首先分析了电网电流反馈控制动态响应慢的原因和理想情况时的动态响应,在此基础上提出了一种提高系统动态性能的方法,该方法的特点是:稳态时,系统的控制策略为电网电流反馈控制,负载突变时,系统采用复合控制策略。文中进一步详细阐述了其实现方法,并对级联APF直流侧电容电压均衡控制的原理及其硬件实现进行了描述。仿真和实验结果表明,采用该方法的级联APF具有较高的稳态和动态补偿性能。展开更多
In this paper,a Backstepping Global Integral Terminal Sliding Mode Controller(BGITSMC)with the view to enhancing the dynamic stability of a hybrid AC/DC microgrid has been presented.The proposed approach controls the ...In this paper,a Backstepping Global Integral Terminal Sliding Mode Controller(BGITSMC)with the view to enhancing the dynamic stability of a hybrid AC/DC microgrid has been presented.The proposed approach controls the switch-ing signals of the inverter,interlinking the DC-bus with the AC-bus in an AC/DC microgrid for a seamless interface and regulation of the output power of renewable energy sources(Solar Photovoltaic unit,PMSG-based wind farm),and Battery Energy Storage System.The proposed control approach guarantees the dynamic stability of a hybrid AC/DC microgrid by regulating the associated states of the microgrid system to their intended values.The dynamic stabil-ity of the microgrid system with the proposed control law has been proved using the Control Lyapunov Function.A simulation analysis was performed on a test hybrid AC/DC microgrid system to demonstrate the performance of the proposed control strategy in terms of maintaining power balance while the system’s operating point changed.Furthermore,the superiority of the proposed approach has been demonstrated by comparing its performance with the existing Sliding Mode Control(SMC)approach for a hybrid AC/DC microgrid.展开更多
文摘基于级联H桥多电平拓扑的有源电力滤波器(Active Power Filter,APF)的研究越来越广泛。本文针对级联型APF系统的动态性能进行了研究。首先分析了电网电流反馈控制动态响应慢的原因和理想情况时的动态响应,在此基础上提出了一种提高系统动态性能的方法,该方法的特点是:稳态时,系统的控制策略为电网电流反馈控制,负载突变时,系统采用复合控制策略。文中进一步详细阐述了其实现方法,并对级联APF直流侧电容电压均衡控制的原理及其硬件实现进行了描述。仿真和实验结果表明,采用该方法的级联APF具有较高的稳态和动态补偿性能。
文摘In this paper,a Backstepping Global Integral Terminal Sliding Mode Controller(BGITSMC)with the view to enhancing the dynamic stability of a hybrid AC/DC microgrid has been presented.The proposed approach controls the switch-ing signals of the inverter,interlinking the DC-bus with the AC-bus in an AC/DC microgrid for a seamless interface and regulation of the output power of renewable energy sources(Solar Photovoltaic unit,PMSG-based wind farm),and Battery Energy Storage System.The proposed control approach guarantees the dynamic stability of a hybrid AC/DC microgrid by regulating the associated states of the microgrid system to their intended values.The dynamic stabil-ity of the microgrid system with the proposed control law has been proved using the Control Lyapunov Function.A simulation analysis was performed on a test hybrid AC/DC microgrid system to demonstrate the performance of the proposed control strategy in terms of maintaining power balance while the system’s operating point changed.Furthermore,the superiority of the proposed approach has been demonstrated by comparing its performance with the existing Sliding Mode Control(SMC)approach for a hybrid AC/DC microgrid.