为电池或燃料电池供电的交流电机驱动器优化的直流-交流转换策略

A. Fratta, P. Guglielmi, G. Pellegrino, F. Villata
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引用次数: 6

摘要

提出了一种新的直流-交流转换策略,该策略在直流供电的交流电机驱动中表现出优异的性能。理论电力系统设计分析和广泛的实验验证表明,采用稳压h桥升压DC-DC变换器级可以提高直接PWM VSI连接到可变电压电池电源的总体成本和效率。在这项工作中,研究了适合于最大限度地利用电力系统能力的调制和控制策略。通过h桥和VSI调制模式和控制任务之间的受控协调,最小的PWM纹波内容和线性电压转移达到六步操作是目标。由此产生的策略称为交叉电压调制,这是第一次与所要求的3-/spl Phi/ PWM增强称为平衡包络调制一起报道。实现了CVM策略,并进行了实验测试,取得了令人满意的效果,实现了新型汽车交流电机的驱动质量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
DC-AC conversion strategy optimized for battery or fuel-cell-supplied AC motor drives
A novel DC-AC conversion strategy is presented, which is proposing outstanding performances in DC-supplied AC motor drives. Theoretical power system design analyses and wide experimental verifications suggested the adoption of regulated H-bridge boost DC-DC converter stage improving overall cost and efficiency with respect to direct PWM VSI connection to variable voltage battery supply. In this work, the modulation and control strategies are investigated, suitable for the best exploitation of the power system capabilities. Through a controlled coordination between H-bridge and VSI modulation patterns and control tasks, minimum PWM ripple contents and linear voltage transfer up to six-step operation are the targets. The resulting strategy, called cross-over voltage modulation, is reported for the first time together with the requested 3-/spl Phi/ PWM enhancement called balanced envelopes modulation. CVM strategy is realized and experimental tests are reported showing very satisfactory results, achieving new automotive AC motor drive quality.
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