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Design and Implementation of a ZCS-PWM Half-Bridge Boost Rectifier With Output Voltage Balance Control

机译:具有输出电压平衡控制的ZCS-PWM半桥升压整流器的设计与实现

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This paper provides a zero-current-switching (ZCS)-pulse width modulation (PWM) half-bridge boost rectifier with output voltage balance control using ZCS auxiliary resonant circuits. In the proposed ZCS-PWM half-bridge boost rectifier, ZCS in the active switches and ZCS in passive switches are performed without additional current stress. In addition to reduce switching losses, significant reductions in the conduction loss and in the current stress are realized because the circulating current for the soft-switching flows only through the auxiliary circuit. The steady-state analysis is performed for operation illustration, and the small-signal model is built up for output regulation control and power factor correction (PFC). An average-current-mode for PFC is utilized to control the proposed ZCS-PWM half-bridge boost in the continuous conduction mode. The two output capacitor voltage imbalance is inherent in the half-bridge rectifier, and therefore the balance control technique is added to be more complete for this research. The operational principles, design considerations, and realizations are discussed and verified. The specification of the proposed ZCS-PWM half-bridge boost is rated at 400 W and operates at 30 kHz, with an input ac voltage of 110 Vrms and a regulated output voltage 400 Vdc, for experiments to verify the theoretic analysis of the proposed ZCS-PWM half-bridge boost with output voltage balance control.
机译:本文提供了一种零电流开关(ZCS)-脉冲宽度调制(PWM)半桥升压整流器,该输出使用ZCS辅助谐振电路进行输出电压平衡控制。在提出的ZCS-PWM半桥升压整流器中,有源开关中的ZCS和无源开关中的ZCS无需额外的电流应力即可执行。除了减少开关损耗之外,由于用于软开关的循环电流仅流过辅助电路,因此可以显着降低传导损耗和电流应力。进行稳态分析以进行操作说明,并为输出调节控制和功率因数校正(PFC)建立小信号模型。 PFC的平均电流模式用于在连续传导模式下控制建议的ZCS-PWM半桥升压。半桥整流器固有两个输出电容器的电压不平衡,因此添加了平衡控制技术以使本研究更加完整。讨论并验证了操作原理,设计注意事项和实现。拟议中的ZCS-PWM半桥升压技术指标额定为400 W,工作频率为30 kHz,输入交流电压为110 V ,调节后的输出电压为400 V dc ,用于通过实验验证所提出的具有输出电压平衡控制的ZCS-PWM半桥升压的理论分析。

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