Series-resonant energy conversion with multi-segment current waveforms for bipolar energy flow

J. Klaassens, J. van Duivenbode
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引用次数: 6

Abstract

A power-pulse-modulation control method is applied to a series-resonant converter system with multiple ports for generating synthesized waveforms with reversible power flow. The energy emanates from a source (single of polyphase voltage source generating unipolar of bipolar waveforms), and is transmitted to a network (load) in a specific form (unipolar or bipolar, single or polyphase voltage waveforms). A discussion of the stability of the energy transfer in relation to the excitation voltage leads to a clarifying description of the possibilities for the control of the resonant energy transfer for any conversion ratio. A control strategy is applied to adapt the characteristics of the resonant circuit to the rapidly varying voltages. The results of a simulation program, developed particularly for this class of conversion systems, confirm the processes.<>
双极能量流多段电流波形串联谐振能量转换
将功率脉冲调制控制方法应用于具有多端口的串联谐振变换器系统,以产生可逆潮流的合成波形。能量从一个源(产生单极或双极波形的单相或多相电压源)发出,并以特定形式(单极或双极、单相或多相电压波形)传输到网络(负载)。对能量传递的稳定性与激励电压的关系的讨论,导致对任何转换比的共振能量传递的控制可能性的澄清描述。采用一种控制策略使谐振电路的特性适应快速变化的电压。专门为这类转换系统开发的仿真程序的结果证实了这些过程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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