Effect of the Excitation Conditions on the Power Generation Efficiency of a Switched Reluctance Generator

Natchanon Wanthong, K. Ohyama
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引用次数: 1

Abstract

This paper proposes an excitation angle condition capable creating high generation efficiency for a switched reluctance generator (SRG) with low loss. This paper examines high power generation efficiency by reducing copper loss in 12/8 switched reluctance generators operated at various speeds within a wind power generation system. For this purpose, excited current waveforms and excitation angles capable of reducing the copper loss are considered. The current waveforms that appear in the duration of the excitation stage are classified into three types. The copper loss and energy conversion loop that depend on the excitation current waveforms are also analyzed. Furthermore, the correlations between the excitation condition and power generation efficiency, copper loss, excited current waveforms and energy conversion loop are considered. Finally, the excitation conditions which reduce copper loss and improve the power generation efficiency at various speeds are summarized.
励磁条件对开关磁阻发电机发电效率的影响
提出了一种低损耗开关磁阻发电机的高发电效率励磁角条件。本文通过降低在风力发电系统中以不同速度运行的12/8开关磁阻发电机的铜损耗来研究高发电效率。为此,考虑了能够降低铜损耗的激励电流波形和激励角。在激励阶段持续时间内出现的电流波形分为三种类型。分析了依赖于励磁电流波形的铜损耗回路和能量转换回路。此外,还考虑了励磁条件与发电效率、铜损耗、励磁电流波形和能量转换回路之间的关系。最后总结了在不同转速下降低铜损耗、提高发电效率的励磁条件。
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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