This paper deals with a parallel processing uninterruptible power supply (UPS) for sudden voltage fluctuation in power management to integrate power quality improvement, load voltage stabilization and UPS. To reduce t...This paper deals with a parallel processing uninterruptible power supply (UPS) for sudden voltage fluctuation in power management to integrate power quality improvement, load voltage stabilization and UPS. To reduce the complexity, cost and number of power conversions, which results in higher efficiency, only one voltage-controlled voltage source inverter (VCVSI) is used. The VCVSI is connected in series on the DC battery side and in parallel on the AC grid side with a decoupling inductor. The system provides sinusoidal voltage at the fundamental value of 220V/60Hz for the load during abnormal utility power conditions or grid failure. Also, the system can be operated to mitigate the harmonic current and voltage demand from nonlinear loads and provide voltage stabilization for loads when sudden voltage fluctuation occur, such as sag and swell. The experimental results confirm the system protects against outages caused by abnormal utility power conditions and sudden voltage fluctuations and change.展开更多
首先详细分析基于移相全桥的串联升压式部分功率DC-DC变换器的工作原理和特性,与传统Boost电路相比,该变换器具有开关管和二极管电气应力低、零电压开关以及输入输出电流均连续等优点;其次,对变换器建立小信号模型,由于不存在右半平面零...首先详细分析基于移相全桥的串联升压式部分功率DC-DC变换器的工作原理和特性,与传统Boost电路相比,该变换器具有开关管和二极管电气应力低、零电压开关以及输入输出电流均连续等优点;其次,对变换器建立小信号模型,由于不存在右半平面零点,因此避免了Boost电路动态响应慢的缺点;最后,通过1.6 k W的原理样机实验验证了理论分析的可靠性。展开更多
文摘This paper deals with a parallel processing uninterruptible power supply (UPS) for sudden voltage fluctuation in power management to integrate power quality improvement, load voltage stabilization and UPS. To reduce the complexity, cost and number of power conversions, which results in higher efficiency, only one voltage-controlled voltage source inverter (VCVSI) is used. The VCVSI is connected in series on the DC battery side and in parallel on the AC grid side with a decoupling inductor. The system provides sinusoidal voltage at the fundamental value of 220V/60Hz for the load during abnormal utility power conditions or grid failure. Also, the system can be operated to mitigate the harmonic current and voltage demand from nonlinear loads and provide voltage stabilization for loads when sudden voltage fluctuation occur, such as sag and swell. The experimental results confirm the system protects against outages caused by abnormal utility power conditions and sudden voltage fluctuations and change.
文摘首先详细分析基于移相全桥的串联升压式部分功率DC-DC变换器的工作原理和特性,与传统Boost电路相比,该变换器具有开关管和二极管电气应力低、零电压开关以及输入输出电流均连续等优点;其次,对变换器建立小信号模型,由于不存在右半平面零点,因此避免了Boost电路动态响应慢的缺点;最后,通过1.6 k W的原理样机实验验证了理论分析的可靠性。