中压(medium voltage,MV)配电网中无功补偿电容器易与网侧电感形成并联谐振,放大公共耦合点(point of common coupling,PCC)电压。为了应对两电平并联型有源电力滤波器(shunt active power filter,SAPF)不适用于中压配电网场合,且只抑...中压(medium voltage,MV)配电网中无功补偿电容器易与网侧电感形成并联谐振,放大公共耦合点(point of common coupling,PCC)电压。为了应对两电平并联型有源电力滤波器(shunt active power filter,SAPF)不适用于中压配电网场合,且只抑制谐波不能解决谐波与谐振同时存在的问题,提出了一种基于模块化多电平的并联型有源电力滤波器(modular multilevel converter based SAPF,MMC-SAPF)的谐振阻尼技术。首先分析了MMC-SAPF的工作原理,采用载波移相调制策略(phase shifted carrier PWM,PSC-PWM)以及电容电压平衡控制策略,以实现MMC-SAPF的高等效开关频率。然后分析了MV配电网的谐振机理,指出谐波抑制策略失效的原因,在此基础上,提出将MMC-SAPF控制为谐振频率处的虚拟电阻,提高系统阻尼比以治理谐振。搭建了一台60 V/2 kVA的实验样机,并构建7次谐振环境,实验结果验证了复合控制策略阻尼谐振的有效性。展开更多
该文以三相电压型脉宽调制(pulse width modulation,PWM)整流器为研究对象,提出一种基于新型开关表的直接功率控制(direct power control,DPC)策略。首先,根据两相旋转dq坐标系下整流器数学模型计算开关矢量对有功功率和无功功率的控制...该文以三相电压型脉宽调制(pulse width modulation,PWM)整流器为研究对象,提出一种基于新型开关表的直接功率控制(direct power control,DPC)策略。首先,根据两相旋转dq坐标系下整流器数学模型计算开关矢量对有功功率和无功功率的控制幅度,并归一化处理进行定量分析,以此为基础将传统DPC的12扇区重新划分为24扇区。然后,设计有功功率差值区间判断器,根据其输出值Cp和有功功率与无功功率滞环比较器的输出值Sp、Sq,选择当前扇区最佳开关矢量构造新型开关表,实现对有功功率的精确控制。仿真对比表明,该新型开关表不仅克服传统开关表对无功功率控制能力差的缺点,而且改善网侧电流总谐波失真,降低输出直流电压波动和有功功率与无功功率脉动。最后,搭建一台800W三相电压型PWM整流器样机,通过对比实验验证所提控制策略的正确性和有效性。展开更多
A new PWM converter based on soft switching is introduced. The converter uses a minimum number of devices, and requires less switching operations than conventional techniques. Switching is realized solely in a ZVS (z...A new PWM converter based on soft switching is introduced. The converter uses a minimum number of devices, and requires less switching operations than conventional techniques. Switching is realized solely in a ZVS (zero voltage switching) mode, therefore the loss is reduced and EMI (electromagnetic interference) is suppressed. The paper analyzes the operation of ZVS, and discusses the methods for maintaining a unit power factor and constant DC voltage. Changing the modulation index M and the phase angle θ keeps the input current in phase with the voltage. It also keeps the current sinusoidal, and ensures a constant output voltage.展开更多
文摘中压(medium voltage,MV)配电网中无功补偿电容器易与网侧电感形成并联谐振,放大公共耦合点(point of common coupling,PCC)电压。为了应对两电平并联型有源电力滤波器(shunt active power filter,SAPF)不适用于中压配电网场合,且只抑制谐波不能解决谐波与谐振同时存在的问题,提出了一种基于模块化多电平的并联型有源电力滤波器(modular multilevel converter based SAPF,MMC-SAPF)的谐振阻尼技术。首先分析了MMC-SAPF的工作原理,采用载波移相调制策略(phase shifted carrier PWM,PSC-PWM)以及电容电压平衡控制策略,以实现MMC-SAPF的高等效开关频率。然后分析了MV配电网的谐振机理,指出谐波抑制策略失效的原因,在此基础上,提出将MMC-SAPF控制为谐振频率处的虚拟电阻,提高系统阻尼比以治理谐振。搭建了一台60 V/2 kVA的实验样机,并构建7次谐振环境,实验结果验证了复合控制策略阻尼谐振的有效性。
文摘该文以三相电压型脉宽调制(pulse width modulation,PWM)整流器为研究对象,提出一种基于新型开关表的直接功率控制(direct power control,DPC)策略。首先,根据两相旋转dq坐标系下整流器数学模型计算开关矢量对有功功率和无功功率的控制幅度,并归一化处理进行定量分析,以此为基础将传统DPC的12扇区重新划分为24扇区。然后,设计有功功率差值区间判断器,根据其输出值Cp和有功功率与无功功率滞环比较器的输出值Sp、Sq,选择当前扇区最佳开关矢量构造新型开关表,实现对有功功率的精确控制。仿真对比表明,该新型开关表不仅克服传统开关表对无功功率控制能力差的缺点,而且改善网侧电流总谐波失真,降低输出直流电压波动和有功功率与无功功率脉动。最后,搭建一台800W三相电压型PWM整流器样机,通过对比实验验证所提控制策略的正确性和有效性。
文摘A new PWM converter based on soft switching is introduced. The converter uses a minimum number of devices, and requires less switching operations than conventional techniques. Switching is realized solely in a ZVS (zero voltage switching) mode, therefore the loss is reduced and EMI (electromagnetic interference) is suppressed. The paper analyzes the operation of ZVS, and discusses the methods for maintaining a unit power factor and constant DC voltage. Changing the modulation index M and the phase angle θ keeps the input current in phase with the voltage. It also keeps the current sinusoidal, and ensures a constant output voltage.