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首页> 外文期刊>Electric Power Applications, IET >Analysis and control of self-excited induction generator-converter systems for battery charging applications
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Analysis and control of self-excited induction generator-converter systems for battery charging applications

机译:用于电池充电应用的自励感应发电机-转换器系统的分析和控制

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摘要

A method has been developed for the analysis of operation of self-excited induction generators (SEIGs) supplying battery charging loads through three-phase semi-converters by representing the battery circuit as equivalent resistance and reactance in the equivalent circuit of these generators. Such equivalent values are functions of the dc charging voltage and current and the control angle set in the converter. The solution for this circuit has been carried out using the genetic algorithm technique instead of using higher-order polynomials for the loop or nodal equations of the circuit. Apart from the conventional phase angle control, other firing control schemes namely negative firing angle control, extinction angle control and symmetrical angle control have been considered for the operation of the converter. The relative performance of these control schemes, for the various modes of operation of SEIG-converter systems such as constant and variable speed, has been brought out. Experimental results obtained on a three-phase SEIG charging suitable batteries through an IGBTbased semi-converter, controlled with all these schemes, confirm the usefulness of the proposed system and the validity of its analysis.
机译:通过将电池电路表示为这些发电机的等效电路中的等效电阻和电抗,已经开发出了一种方法来分析通过三相半转换器为电池充电负载供电的自励感应发电机(SEIG)的运行情况。这些等效值是直流充电电压和电流以及转换器中设置的控制角度的函数。该电路的解决方案是使用遗传算法技术完成的,而不是对电路的回路或节点方程使用高阶多项式。除了常规的相位角控制之外,还考虑了用于转换器操作的其他点火控制方案,即负点火角控制,消光角控制和对称角控制。对于SEIG变流器系统的各种运行模式(例如恒速和变速),这些控制方案的相对性能已得到体现。在所有这些方案的控制下,通过基于IGBT的半转换器对适合电池的三相SEIG充电所获得的实验结果证实了所提出系统的有用性及其分析的有效性。

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