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Voltage control of single-phase two winding self excited induction generator for isolated loads

机译:单相两绕组自激感应发电机隔离负载的电压控制

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摘要

Wind and mini/micro hydro electric generation systems are gaining popularity due to their self sustaining attributes. The Self Excited Induction Generators (SEIGs) are most viable generating machines for such applications due to certain merits of these machines. However, in-spite of carrying excellent fault tolerant and rugged construction, their biggest drawback is an inherently poor voltage regulation. This paper presents a simple method for voltage control of a single phase, capacitor excited induction generator. The voltage control strategy adopted for the modeling is based on series connected static capacitor compensation in the main winding of SEIG. The excitation (shunt) capacitance is accommodated in the auxiliary winding to facilitate voltage buildup of the generator. The simulations are carried out by generating programs in MATLAB M-file to get various performance characteristics of SEIG. In order to verify the optimality of the derived model, experimental verification of results of shunt model is carried out on a 1 hp, 220/230 V, single phase induction motor working as SEIG. Reasonable agreement between simulated and experimental results is observed. The obtained results explicitly exhibit the improved voltage regulation and substantially enhanced steady state loading limit of SEIG.
机译:风力和微型/微型水力发电系统因其自我维持的特性而越来越受欢迎。自激式感应发电机(SEIG)是此类应用中最可行的发电机,因为它们具有某些优点。然而,尽管具有出色的容错和坚固结构,但它们的最大缺点是固有的不良电压调节。本文提出了一种简单的方法来控制单相电容器励磁感应发电机的电压。建模采用的电压控制策略基于SEIG主绕组中的串联静态电容器补偿。励磁(并联)电容容纳在辅助绕组中,以促进发电机的电压积累。通过在MATLAB M文件中生成程序来进行仿真,以获得SEIG的各种性能特征。为了验证导出模型的最优性,在作为SEIG的1 hp,220/230 V单相感应电动机上对分流模型的结果进行了实验验证。观察到模拟结果与实验结果之间的合理一致性。所获得的结果明确显示出改善的电压调节和SEIG稳态负载极限的显着提高。

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