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Design of a Universal Charger for a Light Electric Vehicle with Effect of an RCD Snubber on Peak Current Control

机译:用于轻型电动车辆的通用充电器设计,具有RCD缓冲器对峰值电流控制的影响

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The design process for a single phase, smart, universal charger for light electric vehicles, is presented. With a step up, power factor correction circuit, followed by a phase shifted, full bridge converter, with synchronous rectification on the secondary side. Due to the resistor-capacitor-diode snubber on the secondary side, the current peak at the start of power transfer, leads to false triggering during light load control with peak current mode control. The solution developed for light loads, is to change from peak current control to voltage control. This is achieved by limiting the maximum phase shift, instead of changing the reference value. For the power factor correction stage, measured and calculated efficiencies are compared as a function of the output power. The voltage and current waveforms are shown for the power factor correction circuit, and for the phase shifted bridge, the measured current waveform is compared with simulation.
机译:提出了单相,智能,通用电动车辆的设计过程。通过升压,功率因数校正电路,后跟相移,全桥转换器,在次级侧具有同步整流。由于次级侧的电阻电容器二极管缓冲器,电力传输开始时的电流峰值,导致在具有峰值电流模式控制的轻负载控制期间的假触发。为光负载开发的解决方案是从峰值电流控制变为电压控制。这是通过限制最大相移来实现的,而不是改变参考值。对于功率因数校正阶段,测量和计算的效率与输出功率的函数进行比较。示出了电压和电流波形,用于功率因数校正电路,并且对于相移桥,将测量的电流波形与模拟进行比较。

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