The full-bridge zero-voltage and zero-current switching inverter, which can adjust the output power by keeping the duty-cycle of lagging arm constant, changing the duty-cycle of leading arm, is a common circuit topolo...The full-bridge zero-voltage and zero-current switching inverter, which can adjust the output power by keeping the duty-cycle of lagging arm constant, changing the duty-cycle of leading arm, is a common circuit topology of soft-switching inverter arc welding power supplies. However, the output power still remains a certain value when the duty-cycle of leading arm decreases to zero. The working-mode of soft-switching inverter and the waveforms of major parameters with the condition of duty-cycle of leading arm being zero are studied in this paper. U-1 characteristic experiments prove that the minimum output power of soft-switching circuit, which depends on the charged voltage of capacitors in parallel with leading arm, can be decreased by reducing the duty-cycle of lagging arm. By switching working-modes between half-bridge and full-bridge, the output power can swing from zero to the power rating.展开更多
Few applications with electrorheological (ER) fluids have been found in industry. One reason is high voltage power supplies cannot meet the requirement for ER effect. In this paper, an ER control high voltage power ...Few applications with electrorheological (ER) fluids have been found in industry. One reason is high voltage power supplies cannot meet the requirement for ER effect. In this paper, an ER control high voltage power supply for engineering application was designed which reduced power wastage by adopting soft switch technology; lessened its volume to satisfy micromation when adopting the planar transformer and improved its response character- istic by choosing an assistant discharging circuit. Simultaneously, a simulation analysis has been carried out. As results, the output voltage of this high voltage power supply is 5 kV, and the voltage can be continuously regulated and the voltage ripple is only 0. 7 %, so the requirement of stability is also achieved.展开更多
电推进作为一种先进的推进技术,其发射质量轻、比冲高,可以降低发射成本。高压电源是电源处理单元(PPU)的主要功率来源,是大功率、高效PPU设计的重点。新型电力电子技术的应用,将对未来地球同步轨道(GEO)通信卫星和深空探测的发展产生...电推进作为一种先进的推进技术,其发射质量轻、比冲高,可以降低发射成本。高压电源是电源处理单元(PPU)的主要功率来源,是大功率、高效PPU设计的重点。新型电力电子技术的应用,将对未来地球同步轨道(GEO)通信卫星和深空探测的发展产生重要影响。本文以5 k W等级PPU为研究对象,主要介绍大功率电推进技术的现状与发展,从电力电子的拓扑、器件和控制方法 3个角度分析了大功率、高效PPU技术发展的特点与前景,为中国研制大功率PPU高压电源提供参考。展开更多
文摘The full-bridge zero-voltage and zero-current switching inverter, which can adjust the output power by keeping the duty-cycle of lagging arm constant, changing the duty-cycle of leading arm, is a common circuit topology of soft-switching inverter arc welding power supplies. However, the output power still remains a certain value when the duty-cycle of leading arm decreases to zero. The working-mode of soft-switching inverter and the waveforms of major parameters with the condition of duty-cycle of leading arm being zero are studied in this paper. U-1 characteristic experiments prove that the minimum output power of soft-switching circuit, which depends on the charged voltage of capacitors in parallel with leading arm, can be decreased by reducing the duty-cycle of lagging arm. By switching working-modes between half-bridge and full-bridge, the output power can swing from zero to the power rating.
基金supported by the National Natural Science Founda-tion under Grant No. 50771089 and No.10802029
文摘Few applications with electrorheological (ER) fluids have been found in industry. One reason is high voltage power supplies cannot meet the requirement for ER effect. In this paper, an ER control high voltage power supply for engineering application was designed which reduced power wastage by adopting soft switch technology; lessened its volume to satisfy micromation when adopting the planar transformer and improved its response character- istic by choosing an assistant discharging circuit. Simultaneously, a simulation analysis has been carried out. As results, the output voltage of this high voltage power supply is 5 kV, and the voltage can be continuously regulated and the voltage ripple is only 0. 7 %, so the requirement of stability is also achieved.
文摘电推进作为一种先进的推进技术,其发射质量轻、比冲高,可以降低发射成本。高压电源是电源处理单元(PPU)的主要功率来源,是大功率、高效PPU设计的重点。新型电力电子技术的应用,将对未来地球同步轨道(GEO)通信卫星和深空探测的发展产生重要影响。本文以5 k W等级PPU为研究对象,主要介绍大功率电推进技术的现状与发展,从电力电子的拓扑、器件和控制方法 3个角度分析了大功率、高效PPU技术发展的特点与前景,为中国研制大功率PPU高压电源提供参考。