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Design and Control of Permanent Magnet Synchronous Machine for Hybrid Electric Vehicle

机译:混合动力汽车永磁同步电机的设计与控制

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摘要

This master’s thesis mainly focuses on the design requirements of an Electric drive for Hybrid car application and its control strategy to achieve a wide speed range. It also emphasises how the control and performance requirements are transformed into its design variables. A parallel hybrid topology is considered where an IC engine and an electric drive share a common crank shaft. A permanent magnet synchronous machine (PMSM) is used as an electric drive machine. Performance requirements are converted into Machine design variables using the vector model of PMSM. Main dimensions of the machine are arrived using analytical approach and Finite Element Analysis (FEA) is used to verify the design and performance.Vector control algorithm was used to control the machine. The control algorithm was tested in a low power PMSM using an embedded controller. A prototype of 10 kW PMSM was built according to the design values. The prototype was tested in the laboratory using a high power converter. Tests were carried out to verify different operating modes. The results were in agreement with the calculations.
机译:该硕士论文主要侧重于混合动力汽车应用电动驱动器的设计要求及其实现宽速范围的控制策略。它还强调如何将控制和性能要求转换为其设计变量。考虑并联混合拓扑,其中IC引擎和电驱动器共用一个曲轴。永磁同步电机(PMSM)用作电驱动电机。使用PMSM的矢量模型将性能要求转换为机器设计变量。使用解析方法得出机器的主要尺寸,并使用有限元分析(FEA)验证设计和性能。使用矢量控制算法控制机器。使用嵌入式控制器在低功率PMSM中对控制算法进行了测试。根据设计值构建了10 kW PMSM的原型。使用高功率转换器在实验室对原型进行了测试。进行了测试以验证不同的操作模式。结果与计算结果一致。

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