采用五肢电感的改进型主动前端非再生整流系统

M. Swamy, Steven Schifko
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引用次数: 6

摘要

变频驱动器(vfd)从电力系统中吸取不连续电流,导致电流畸变,进而导致电压畸变。将电流畸变限制在IEEE 519-1992推荐的水平可以提高系统效率,提高可靠性,并限制可能对敏感负载产生不利影响的电压畸变。本文回顾了一种非再生的主动前端系统,该系统在过去已经被研究过,但提供了显著的改进,使其能够被驱动器行业所接受。在拓扑中需要一个三相电流注入电感,以五肢方式构造,并被证明有助于限制非特征谐波。由于注入分体直流母线电容器的电流为360Hz纹波,因此建议将直流母线主电容器分为膜电容器以满足纹波电流,并优化减小电解电容器以满足主储能要求。实验结果是基于建议的改进和低失真水平,在过去没有达到已被证明是可以实现的。比较了标准的三肢电感器和五肢电感器,以突出可实现的性能改进。本文还提出了在普通直流母线应用中采用该拓扑的建议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An improved active front end non-regenerative rectifier system employing a five-limb inductor
Variable frequency drives (VFDs) draw discontinuous current from the power system resulting in current distortion and consequently voltage distortion. Limiting current distortion to levels recommended in IEEE 519-1992 improves system efficiency, increases reliability, and limits voltage distortion that can adversely influence sensitive loads. This paper revisits a non regenerative active front end system that has been studied in the past but offers significant improvements to make it acceptable to the drives industry. A three-phase current injecting inductor, required in the topology, is constructed in a five limb fashion and is shown to be helpful in limiting non characteristic harmonics. Since the current injected into the split dc bus capacitor is a 360Hz ripple, it is proposed that the main dc bus capacitor be split into film capacitor for ripple current and optimally reduced electrolytic capacitor for the main energy storage requirements. Experimental results are given based on the suggested improvement and low distortion levels that were not achieved in the past have been shown to be attainable. Comparison between a standard three-limb inductor and a five-limb inductor is made to highlight the performance improvements achievable. Adoption of the topology for common dc bus applications is also proposed.
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