包括可变频率和固定频率的ZVS逆变器的非理想行为:分析、补偿和验证

Benedikt Kohlhepp, Jens Heubeck, Thomas Duerbaum
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引用次数: 3

摘要

本文研究了一种双电平逆变器。提出了一种具有零电压开关(ZVS)的逆变器的调制方案,具有固定和可变的开关频率。该控制方案采用一种混合方法来确定半桥的开关动作,该方法由电流阈值检测电路和从理想半桥电路的基本波形的数值评估中预测组成。与传统的固定频率PWM逆变器相比,本研究的逆变器具有更高的有效值电流,同时消除了开关损耗。由于逆变器实际设置中的几个组件不可避免地引入非理想性,因此对这些及其对输出波形的影响进行了研究。该研究包括电流阈值检测电路的传播延迟、滤波电容和直流链路电容。我们的研究表明有必要考虑这些影响。我们表明,如果在实验设置中适当考虑这些影响,可以实现低电压和高压应用的平滑输出波形。总谐波失真(THD)用于评估输出波形质量,当适当考虑所有影响时,其为0.81%,©2017 Elsevier Inc.。版权所有。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Non‐ideal behavior of ZVS inverter comprising variable and fixed frequency operation: Analysis, compensation, and verification

This paper presents a study of a two-level inverter. It proposes a modulation scheme for inverters featuring zero-voltage switching (ZVS) with both fixed and variable switching frequency operation. The control scheme uses a hybrid method to determine the switching actions of the half-bridge consisting of a current threshold detection circuit and predictions from numerical evaluations of fundamental waveforms of an ideal half-bridge circuit. Compared with conventional fixed frequency PWM inverters, the inverter in this study exhibits higher rms currents but eliminates switching losses. As several components in practical setups of the inverter inevitably introduce non-idealities, a study of these and their impact on the output waveforms follows. The study comprises the propagation delay of the current threshold detection circuit, the filter capacitance, and the DC-link capacitance. Our study demonstrates the need to consider these effects. We show that smooth output waveforms can be achieved for low and high voltage applications if these effects are properly taken into account in an experimental setup. The total harmonic distortion (THD) is used to evaluate the output waveform quality, which is 0.81% when all effects are properly considered, © 2017 Elsevier Inc. All rights reserved.

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来源期刊
Power electronic devices and components
Power electronic devices and components Hardware and Architecture, Electrical and Electronic Engineering, Atomic and Molecular Physics, and Optics, Safety, Risk, Reliability and Quality
CiteScore
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