Kontrol Tegangan Self-Excited Induction Generator dengan Electronic Load Controller Terkontrol PID-GA

E. A. Hakim, Rahayu Pandunengsih, D. Suhardi, N. Setyawan
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引用次数: 0

Abstract

Induction generator operation requires reactive power with external contactor. One of induction generator types, SEIG reactive power supplied by capacitor bank connected to generator terminal. SEIG is alternative energy conversion in small area or rural, SEIG has the main disadvantage of poor voltage regulation under various load conditions. ELC combine PID control which is optimized using Genetic Algorithm in order to maintain the stability of the voltage when the load varies. The result shows the SEIG system using ELC with PID-GA control worked to stable voltage in accordance with the standard with voltage tolerance of 10% when load change. The addition of GA to determine the value of the PID parameter where response system better with difference overshoot value start is 70.48%, when decrease load in 5 second by 44.3% and in the 10 second when increase load of 2 kW is 5.96% compared system with PID control without GA optimization.
控制:特甘自激感应发电机、登甘电子负载控制器、PID-GA控制
感应发电机运行需要带外部接触器的无功功率。感应发电机类型之一,SEIG无功功率由连接到发电机终端的电容器组提供。SEIG是小区域或农村的替代能源转换,SEIG的主要缺点是各种负荷条件下电压调节差。为了在负载变化时保持电压的稳定,ELC结合了遗传算法优化的PID控制。结果表明,当负载发生变化时,采用PID-GA控制的ELC SEIG系统能稳定工作在符合标准的电压下,电压容差为10%。加入遗传算法确定的PID参数值与未加遗传算法优化的PID控制相比,当系统响应较优时,差超调值启动时的PID参数值为70.48%,当5秒内负荷下降时的PID参数值为44.3%,当10秒内负荷增加2 kW时的PID参数值为5.96%。
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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