Dynamic performance of self-excited induction generator with electronic load controller under starting of induction motor load

P. Aree
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引用次数: 5

Abstract

Small hydropower is one of the attractive energy sources, proving electricity generation in rural area. Three-phase self-excited induction generator (SEIG) usually equipped with an unregulated water turbine is widely used under constant-power mode. So, many SEIGs are worked with Electronic Load Controller (ELC) for adjusting their unbalanced energies between input and output powers. Because the dynamic studies of SEIG with ELC are mostly limited with static loads, in this paper, the SEIG dynamic performances with ELC are investigated under switch-started dynamic induction motor (IM). The problem of voltage collapse due to lack of reactive power support when the SEIG feeds the dynamic IM load is demonstrated. This paper also proposes the cheapest way using paralleled-motor capacitors to provide the reactive power support. The study results show that the problems of voltage collapse due to the motor starting can be resolved using the paralleled-motor capacitors together with ELC.
带电子负载控制器的自励感应发电机在感应电机负载启动下的动态性能
小水电是一种极具吸引力的能源,可以为农村地区提供电力。三相自励感应发电机(SEIG)在恒功率模式下被广泛应用,通常与无调水轮机配套使用。因此,许多SEIGs都采用了电子负载控制器(ELC)来调节其输入和输出功率之间的不平衡能量。由于带ELC的SEIG的动力学研究大多局限于静态负载,因此本文研究了开关起动动态感应电动机(IM)下带ELC的SEIG的动态性能。分析了SEIG向动态IM负载供电时,由于缺乏无功支持而导致的电压崩溃问题。本文还提出了利用并联电机电容器提供无功支持的最经济的方法。研究结果表明,并联电机电容器结合ELC可有效解决电机起动时电压崩溃的问题。
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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