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A single-phase induction motor operating as a self-excited induction generator

机译:单相电动机作为自兴诱导发电机运行

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摘要

The purpose of the paper is the investigation of possibility of utilization of a single-phase induction machine, designed and normally operating as a single-phase capacitor induction motor, as a self-excited single-phase induction generator, which can be used to generate electrical energy from non-conventional energy sources. The paper presents dq model of the self-excited single-phase induction generator for dynamic characteristics simulation and steady-state model based on double revolving field theory with two phase symmetrical components - a forward and backward revolving field for performance of the generator under resistive load. Excitation and load characteristics obtained by simulation showed considerable influence of method of capacitor configuration in the load stator winding on terminal voltage, current and output power of the generator under load. An specific construction of the stator windings together with capacitor requirements to obtain nominal output power at desired self-regulating terminal voltage over the operating range will be the aim of further research.
机译:本文的目的是对利用单相电容,设计且通常操作的可能性,作为单相电容器感应电动机的可能性,作为自我激励的单相电动发电机,可用于产生来自非传统能源的电能。基于双相对称组件的双旋转场理论,对动态特征模拟和稳态模型的自激式单相诱导发电机的DQ模型介绍了双相对称组件的正向和后向旋转场在电阻负载下发电机的性能。通过仿真获得的激发和负载特性对负载载荷的端子电压,电流和输出功率的负载定子绕组中的电容器配置方法具有相当大的影响。定子绕组与电容器要求一起的特定结构,以在所需的自调节端电压下获得标称输出功率在操作范围内将是进一步研究的目的。

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