A highly efficient and re liable topology-dual buck half bridge inverter (DBI) is introduced. The existenc e of discontinuous conduction mode (DCM) operation state requires the bias of in du ctor current for DBI imple...A highly efficient and re liable topology-dual buck half bridge inverter (DBI) is introduced. The existenc e of discontinuous conduction mode (DCM) operation state requires the bias of in du ctor current for DBI implemented with linear controllers like ramp comparison SP WM (RCSPWM) controllers. A novel operation scheme for DBI and a hysteresis curre nt controlled dual buck half bridge inverter (HCDBI) are proposed. The bias curr ent required by RCSPWM DBI is eliminated and conduction losses are dramatically reduced. HCDBI has greatly improved the modulation performance in DCM region for the benefit of its excellent command tracking capability. The operational schem e and control strategy are presented. Power losses of the conventional half brid ge inverter (CHBI) and HCDBI are compared with mathematical computation, and exp erimental verification is also executed. Both calculational and experimental res ults verify that HCDBI has a superior switching performance over CHBI. Its exce llent high frequency operational capacity provides another access to realize high fre quency operation of inverters.展开更多
滞环电流控制(hysteresis current control,HCC)是一种传统的电流控制方法,其实现简单、鲁棒性好、动态响应快。但当应用到三相系统时,由于三相间的耦合,会存在电流谐波大、开关频率过高等缺点。该文首先回顾了近年来为解决传统滞环...滞环电流控制(hysteresis current control,HCC)是一种传统的电流控制方法,其实现简单、鲁棒性好、动态响应快。但当应用到三相系统时,由于三相间的耦合,会存在电流谐波大、开关频率过高等缺点。该文首先回顾了近年来为解决传统滞环控制自身问题而提出的一种改进的基于空间矢量的滞环电流控制(improved space vector-based HCC,ISV-HCC)方法的优缺点,然后提出了一种新型的基于电压空间矢量的类正弦滞环电流控制方法。该方法参考了空间矢量脉宽调制(space vector pulse width modulation,SVPWM)调制中的电压矢量概念,根据系统参数给定上下两滞环带,且当三相电流误差均在规定的滞环内时,采用零电压矢量开关模式,而当电流误差超出规定的滞环带时,则按照指定的逻辑对三相开关进行控制。最后,通过与传统HCC及ISV-HCC进行并网仿真与实验对比,证明该文所提出的方法具有更低的电流谐波及更小的开关频率,整体上具有更优的控制性能。展开更多
文摘A highly efficient and re liable topology-dual buck half bridge inverter (DBI) is introduced. The existenc e of discontinuous conduction mode (DCM) operation state requires the bias of in du ctor current for DBI implemented with linear controllers like ramp comparison SP WM (RCSPWM) controllers. A novel operation scheme for DBI and a hysteresis curre nt controlled dual buck half bridge inverter (HCDBI) are proposed. The bias curr ent required by RCSPWM DBI is eliminated and conduction losses are dramatically reduced. HCDBI has greatly improved the modulation performance in DCM region for the benefit of its excellent command tracking capability. The operational schem e and control strategy are presented. Power losses of the conventional half brid ge inverter (CHBI) and HCDBI are compared with mathematical computation, and exp erimental verification is also executed. Both calculational and experimental res ults verify that HCDBI has a superior switching performance over CHBI. Its exce llent high frequency operational capacity provides another access to realize high fre quency operation of inverters.
文摘滞环电流控制(hysteresis current control,HCC)是一种传统的电流控制方法,其实现简单、鲁棒性好、动态响应快。但当应用到三相系统时,由于三相间的耦合,会存在电流谐波大、开关频率过高等缺点。该文首先回顾了近年来为解决传统滞环控制自身问题而提出的一种改进的基于空间矢量的滞环电流控制(improved space vector-based HCC,ISV-HCC)方法的优缺点,然后提出了一种新型的基于电压空间矢量的类正弦滞环电流控制方法。该方法参考了空间矢量脉宽调制(space vector pulse width modulation,SVPWM)调制中的电压矢量概念,根据系统参数给定上下两滞环带,且当三相电流误差均在规定的滞环内时,采用零电压矢量开关模式,而当电流误差超出规定的滞环带时,则按照指定的逻辑对三相开关进行控制。最后,通过与传统HCC及ISV-HCC进行并网仿真与实验对比,证明该文所提出的方法具有更低的电流谐波及更小的开关频率,整体上具有更优的控制性能。