有源电力滤波器(Active Power Filter,APF)要求补偿电流能够无误差地跟踪给定的谐波电流信号,否则会影响APF的补偿效果。传统单一控制方法在控制准确度和响应速度上不能兼顾,应用复合控制策略,将不同控制方法的优缺点进行互补组合,可得...有源电力滤波器(Active Power Filter,APF)要求补偿电流能够无误差地跟踪给定的谐波电流信号,否则会影响APF的补偿效果。传统单一控制方法在控制准确度和响应速度上不能兼顾,应用复合控制策略,将不同控制方法的优缺点进行互补组合,可得到更优的控制策略。重复控制能产生与谐波电流相同的输出,因而可以取得对各次谐波零稳态误差跟踪补偿,但是其动态性能不佳。通过与模糊PI控制相结合,形成复合控制策略,可以利用模糊PI控制器保证系统的动态性能,依靠重复控制器提高输出电流波形的跟踪准确度,显著改善滤波效果。经过仿真证明采用的重复-模糊PI复合控制策略可以同时取得较好的补偿准确度与动态响应速度,比较适合于APF中补偿电流的控制。展开更多
叙述了有源电力滤波器APF(Active Power Filter)的基本原理,分别介绍了组成APF的谐波和无功电流检测电路、补偿电流发生电路的构成和功能,在此基础上,介绍了常用的APF的谐波和无功电流检测方法、补偿电流控制方法和直流侧电压控制方法...叙述了有源电力滤波器APF(Active Power Filter)的基本原理,分别介绍了组成APF的谐波和无功电流检测电路、补偿电流发生电路的构成和功能,在此基础上,介绍了常用的APF的谐波和无功电流检测方法、补偿电流控制方法和直流侧电压控制方法。为了验证APF的补偿功能同时加深对其控制方法的认识和理解,用Matlab 6.5/Simulink下的SimPower Systems Blockset对整个三相并联电压型APF系统进行了仿真研究。仿真结果表明,电压空间矢量脉宽调制SVPWM(Space VectorPulse Width Modulation)控制的APF能对负载电流中的谐波和无功分量进行快速精确的补偿。展开更多
An all-digital hybrid current regulation scheme for the single-phase shunt active power filter (APF) is presented. The proposed hybrid current control scheme integrates the deadbeat control and the dual-mode structu...An all-digital hybrid current regulation scheme for the single-phase shunt active power filter (APF) is presented. The proposed hybrid current control scheme integrates the deadbeat control and the dual-mode structure repetitive control (DMRC) so that it can offer superior steady-state performance and good transient features. Unlike the conventional schemes, the proposed scheme-based APF can compensate both the odd and the even order harmonics in grid. The detailed design criteria and the stability analysis of the proposed hybrid current controller are presented. Moreover, an improved structure which incorporates the proposed hybrid controller and the resonant controller for tracking specific order harmonics is given. The relationships between the resonant controller and different repetitive control schemes are discussed. Experimental results verify the effectiveness and advantages of the proposed hybrid control scheme.展开更多
文摘有源电力滤波器(Active Power Filter,APF)要求补偿电流能够无误差地跟踪给定的谐波电流信号,否则会影响APF的补偿效果。传统单一控制方法在控制准确度和响应速度上不能兼顾,应用复合控制策略,将不同控制方法的优缺点进行互补组合,可得到更优的控制策略。重复控制能产生与谐波电流相同的输出,因而可以取得对各次谐波零稳态误差跟踪补偿,但是其动态性能不佳。通过与模糊PI控制相结合,形成复合控制策略,可以利用模糊PI控制器保证系统的动态性能,依靠重复控制器提高输出电流波形的跟踪准确度,显著改善滤波效果。经过仿真证明采用的重复-模糊PI复合控制策略可以同时取得较好的补偿准确度与动态响应速度,比较适合于APF中补偿电流的控制。
文摘叙述了有源电力滤波器APF(Active Power Filter)的基本原理,分别介绍了组成APF的谐波和无功电流检测电路、补偿电流发生电路的构成和功能,在此基础上,介绍了常用的APF的谐波和无功电流检测方法、补偿电流控制方法和直流侧电压控制方法。为了验证APF的补偿功能同时加深对其控制方法的认识和理解,用Matlab 6.5/Simulink下的SimPower Systems Blockset对整个三相并联电压型APF系统进行了仿真研究。仿真结果表明,电压空间矢量脉宽调制SVPWM(Space VectorPulse Width Modulation)控制的APF能对负载电流中的谐波和无功分量进行快速精确的补偿。
基金The National Basic Research Program of China(973 Program)(No.2013CB035603)the National Natural Science Foundation of China(No.51007008,51137001)+1 种基金the Ph.D.Programs Foundation of Ministry of Education of China(No.20100092120043)the Fundamental Research Funds for the Central Universities
文摘An all-digital hybrid current regulation scheme for the single-phase shunt active power filter (APF) is presented. The proposed hybrid current control scheme integrates the deadbeat control and the dual-mode structure repetitive control (DMRC) so that it can offer superior steady-state performance and good transient features. Unlike the conventional schemes, the proposed scheme-based APF can compensate both the odd and the even order harmonics in grid. The detailed design criteria and the stability analysis of the proposed hybrid current controller are presented. Moreover, an improved structure which incorporates the proposed hybrid controller and the resonant controller for tracking specific order harmonics is given. The relationships between the resonant controller and different repetitive control schemes are discussed. Experimental results verify the effectiveness and advantages of the proposed hybrid control scheme.