This paper proposes a zer o current and zero voltage switching (ZCZVS) PWM Boost full bridge (FB) conve rter. With series inductors, the leading switches can realize zero current swit ching (ZCS) in a wide load ra...This paper proposes a zer o current and zero voltage switching (ZCZVS) PWM Boost full bridge (FB) conve rter. With series inductors, the leading switches can realize zero current swit ching (ZCS) in a wide load range using the energy of the output capacitor. Ma king use of parasitic capacitors of the lagging switches and parallel auxiliary i nductance with the primary winding of the transformer, the lagging switches can realize zero voltage switching (ZVS) under any load. Compared with the ZCS PWM Boost FB converter, the new converter has no current duty cycle loss. Operat ional principle and parameter design are analyzed. Experimental results verify the effectiveness of the proposed converter.展开更多
恒频直接功率控制(constant switching frequency direct power control,CSF-DPC)具有开关频率固定、动态性能好、系统采样频率较低等优点。电网电压不平衡会在脉宽调制(pulse width modulation,PWM)型整流器交流侧产生大量谐波电流,使...恒频直接功率控制(constant switching frequency direct power control,CSF-DPC)具有开关频率固定、动态性能好、系统采样频率较低等优点。电网电压不平衡会在脉宽调制(pulse width modulation,PWM)型整流器交流侧产生大量谐波电流,使系统有功功率大幅波动,恶化系统性能。针对上述情况,提出一种新型恒频直接功率控制策略。该策略首先分离出电网电压和电流正、负序分量;然后在正、负序双旋转坐标系下计算瞬时功率与参考值之间的误差,根据误差生成整流器正、负序参考电压;合成后采用空间矢量调制(spacevector modulation,SVM)算法产生整流器电压,对功率进行补偿。该策略可有效抑制交流侧电流谐波,减小系统无功功率直流分量,稳定系统输出的有功功率,改善系统稳态性能。仿真与实验结果证明了该策略的正确性和有效性。展开更多
文摘This paper proposes a zer o current and zero voltage switching (ZCZVS) PWM Boost full bridge (FB) conve rter. With series inductors, the leading switches can realize zero current swit ching (ZCS) in a wide load range using the energy of the output capacitor. Ma king use of parasitic capacitors of the lagging switches and parallel auxiliary i nductance with the primary winding of the transformer, the lagging switches can realize zero voltage switching (ZVS) under any load. Compared with the ZCS PWM Boost FB converter, the new converter has no current duty cycle loss. Operat ional principle and parameter design are analyzed. Experimental results verify the effectiveness of the proposed converter.
文摘恒频直接功率控制(constant switching frequency direct power control,CSF-DPC)具有开关频率固定、动态性能好、系统采样频率较低等优点。电网电压不平衡会在脉宽调制(pulse width modulation,PWM)型整流器交流侧产生大量谐波电流,使系统有功功率大幅波动,恶化系统性能。针对上述情况,提出一种新型恒频直接功率控制策略。该策略首先分离出电网电压和电流正、负序分量;然后在正、负序双旋转坐标系下计算瞬时功率与参考值之间的误差,根据误差生成整流器正、负序参考电压;合成后采用空间矢量调制(spacevector modulation,SVM)算法产生整流器电压,对功率进行补偿。该策略可有效抑制交流侧电流谐波,减小系统无功功率直流分量,稳定系统输出的有功功率,改善系统稳态性能。仿真与实验结果证明了该策略的正确性和有效性。