By deriving the discrete-time models of a digitally controlled H-bridge inverter system modulated by bipolar sinu- soidal pulse width modulation (BSPWM) and unipolar double-frequency sinusoidal pulse width modulati...By deriving the discrete-time models of a digitally controlled H-bridge inverter system modulated by bipolar sinu- soidal pulse width modulation (BSPWM) and unipolar double-frequency sinusoidal pulse width modulation (UDFSPWM) respectively, the performances of the two modulation strategies are analyzed in detail. The circuit parameters, used in this paper, are fixed. When the systems, modulated by BSPWM and UDFSPWM, have the same switching frequency, the stabil- ity boundaries of the two systems are the same. However, when the equivalent switching frequencies of the two systems are the same, the BSPWM modulated system is more stable than the UDFSPWM modulated system. In addition, a convenient method of establishing the discrete-time model of piecewise smooth system is presented. Finally, the analytical results are confirmed by circuit simulations and experimental measurements.展开更多
针对低压直流供电逆变电源的特点,在逆变电源的主要控制策略和单极性弱倍频SPWM控制方式基础上,提出了一种用于逆变电源的复合控制方法,介绍了该复合控制方法中电压有效值环控制、DC分量控制、重复控制及电压电流双闭环瞬时值控制等控...针对低压直流供电逆变电源的特点,在逆变电源的主要控制策略和单极性弱倍频SPWM控制方式基础上,提出了一种用于逆变电源的复合控制方法,介绍了该复合控制方法中电压有效值环控制、DC分量控制、重复控制及电压电流双闭环瞬时值控制等控制环节的设计机理。以DSC MC56F8346为控制核心,设计了一款4 k V·A低压直流供电的逆变电源原理样机,给出了详细的软硬件实现方法,并进行了实验验证,结果表明了采用这种复合控制方法进行SPWM逆变电源设计的可行性。展开更多
基金supported by the National Natural Science Foundation of China (Grant No. 51277146)the Foundation of Delta Science,Technologythe Education Development Program for Power Electronics (Grant No. DREG2011003)
文摘By deriving the discrete-time models of a digitally controlled H-bridge inverter system modulated by bipolar sinu- soidal pulse width modulation (BSPWM) and unipolar double-frequency sinusoidal pulse width modulation (UDFSPWM) respectively, the performances of the two modulation strategies are analyzed in detail. The circuit parameters, used in this paper, are fixed. When the systems, modulated by BSPWM and UDFSPWM, have the same switching frequency, the stabil- ity boundaries of the two systems are the same. However, when the equivalent switching frequencies of the two systems are the same, the BSPWM modulated system is more stable than the UDFSPWM modulated system. In addition, a convenient method of establishing the discrete-time model of piecewise smooth system is presented. Finally, the analytical results are confirmed by circuit simulations and experimental measurements.
文摘针对低压直流供电逆变电源的特点,在逆变电源的主要控制策略和单极性弱倍频SPWM控制方式基础上,提出了一种用于逆变电源的复合控制方法,介绍了该复合控制方法中电压有效值环控制、DC分量控制、重复控制及电压电流双闭环瞬时值控制等控制环节的设计机理。以DSC MC56F8346为控制核心,设计了一款4 k V·A低压直流供电的逆变电源原理样机,给出了详细的软硬件实现方法,并进行了实验验证,结果表明了采用这种复合控制方法进行SPWM逆变电源设计的可行性。