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A 2-kV Charge-Based ZVS Three-Level Inverter

机译:基于2kV电荷的ZVS三电平逆变器

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摘要

Industrial applications, e.g., semiconductor manufacturing equipment, require power converters providing high power with high precision and bandwidth. This article presents a three-level flying capacitor resonant pole inverter configuration that combines high output power and high switching frequency with reduced switch voltage stress. A multilevel modulation strategy is applied to minimize conduction losses, which, in addition, guarantees zero-voltage switching (ZVS) for the entire operating range to reduce switching losses. The proposed multilevel converter configuration is compared with an existing two-level configuration by simulation. Increasing the number of voltage levels results in lower total losses and increased linearity of the generated output current. Experimental results acquired with a hardware prototype validate the fast switching of high voltage, proper functioning of the multilevel modulation strategy, and achieving of ZVS. Improvements of the theoretical analysis are presented to compensate for delays in the system and deviating parameter values. Results obtained with a compensated system indicate a relatively high accuracy and linearity of the generated output current of the inverter.
机译:工业应用,例如半导体制造设备,需要功率转换器以高精度和高带宽提供高功率。本文提出了一种三级飞电容谐振极逆变器配置,该配置将高输出功率和高开关频率与降低的开关电压应力相结合。应用了多级调制策略以最大程度地减小传导损耗,此外,它还保证了整个工作范围内的零电压开关(ZVS),从而降低了开关损耗。通过仿真将建议的多级转换器配置与现有的两级配置进行比较。电压电平数目的增加导致总损耗降低,并且所产生的输出电流的线性度增加。用硬件原型获得的实验结果验证了高压的快速切换,多电平调制策略的适当功能以及ZVS的实现。提出了理论分析的改进,以补偿系统中的延迟和参数值的偏差。用补偿系统获得的结果表明逆变器产生的输出电流具有相对较高的精度和线性度。

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