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Interleaved Four-Phase Buck-Based Current Source With Isolated Energy-Recovery Scheme for Electrical Discharge Machining

机译:交错四相基于降压的电流源,具有隔离的能量回收方案,用于放电加工

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摘要

This paper presents the interleaved four-phase buck-based current source in continuous conduction mode with proposed isolated energy-recovery scheme for electrical discharge machining (EDM). EDM requires a pulse current with high slew rate in the output current of the current source. The interleaving technique allows the output slew rate of the buck-based current source to be improved due to the existence of the paralleled inductors at the start of discharge. The proposed isolated energy-recovery scheme provides a major path for the inductor to release its stored energy, thus avoiding high voltage stress in the output terminal when the gap reverts to the high-impedance state. The energy stored in the inductor is recycled to the input capacitor and can be reused for machining. The experimental results validate that the output current slew rate is high and that the energy is recovered when the gap is in the high-impedance state.
机译:本文介绍了一种连续导通模式的交错四相降压型电流源,并提出了用于放电加工(EDM)的隔离式能量回收方案。 EDM需要在电流源的输出电流中具有高转换速率的脉冲电流。由于在放电开始时存在并联的电感器,因此交错技术可提高基于降压型电流源的输出压摆率。提出的隔离式能量回收方案为电感器释放其存储的能量提供了一条主要途径,从而避免了当间隙恢复为高阻抗状态时输出端子中的高电压应力。电感器中存储的能量被循环到输入电容器,并且可以重新用于加工。实验结果证明,输出电流的摆率高,并且当间隙处于高阻抗状态时能量得以回收。

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