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首页> 外文期刊>Energy Conversion, IEEE Transactions on >Directly Coupled Electromagnetic Field-Electric Circuit Model for Analysis of a Vector-Controlled Wound Field Brushless Starter Generator
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Directly Coupled Electromagnetic Field-Electric Circuit Model for Analysis of a Vector-Controlled Wound Field Brushless Starter Generator

机译:矢量控制的电场无刷起动发电机的直接耦合电磁场模型

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摘要

Directly coupled electromagnetic field-electric circuit modeling approach for coupling an electrical machine to its associated external circuit and power electronics has been widely reported in the literature. However, the inclusion of a closed-loop control system, such as conventional vector (field-oriented) control, within a directly coupled electromagnetic field-electric circuit model has not been widely studied. This is partly because it is a rather complex task. This paper introduces a directly coupled electromagnetic field-electric circuit computational model in which a conventional vector control system has been incorporated for detail simulation of vector-controlled electric machinery drive systems. The model has been successfully applied in the design and analysis of a vector-controlled wound field brushless starter-generator system prototype. Comparison between the simulation and test results for both motor and generator modes show excellent correlation that validates the efficacy and computational soundness of the modeling approach.
机译:在文献中已经广泛报道了用于将电机耦合到其相关的外部电路和功率电子器件的直接耦合的电磁场-电路建模方法。然而,在直接耦合的电磁场-电路模型中包括闭环控制系统,例如传统的矢量(磁场定向)控制,尚未得到广泛研究。部分原因是因为这是一项相当复杂的任务。本文介绍了一种直接耦合的电磁场-电路计算模型,其中并入了传统的矢量控制系统,用于矢量控制电机驱动系统的详细仿真。该模型已成功地应用于矢量控制伤口场无刷起动发电机系统原型的设计和分析。电动机和发电机模式的仿真结果与测试结果之间的比较显示出极好的相关性,从而验证了建模方法的有效性和计算合理性。

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