电阻、电感和激励电容的变化对感应发电机电压和频率的影响

Y. Siregar, Gustiawan, M. K. S. Tial
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引用次数: 0

摘要

电力是当今世界科技发展的重要因素。全球获得电能的最大障碍是难以将偏远地区与传统输电/配电系统连接起来。用来发电的设备是发电机。自激感应发电机是负载不大或相对较小的应用场合的最佳选择。本文研究了负载和励磁电容的变化对发电机电压和频率的影响。从本研究的结果来看,负载变化与电压成反比,与频率成正比。假设所使用的激励电容器的值小于规定值。在这种情况下,产生的电压将更小,其中激励电容的值与发电机频率成反比。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of Changes in Resistive, Inductive, and Excitation Capacitance on Voltage and Frequency of Induction Generators
Electricity is an important factor in technological development worldwide in this modern era. The biggest obstacle to global access to electrical energy is the difficulty of connecting remote areas to conventional transmission/distribution systems. The equipment used to generate electricity is a generator. Self-exciting induction generators are the best choice for applications where loads are not large or relatively small. This research conducted the effect of changes in load and excitation capacitance on the voltage and frequency of the generator. From the results of this study, the load change is inversely proportional to the voltage and directly proportional to the frequency. Suppose the value of the excitation capacitor used is smaller than the specified value. In that case, the resulting voltage will be smaller, where the value of the excitation capacitor is inversely proportional to the generator frequency.
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