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首页> 外文期刊>International Journal of Automotive Technology >ADVANCED PERMANENT MAGNET MOTOR DRIVE MODELING FOR AUTOMOTIVE APPLICATION UNDER MATLAB/SIMULINK ENVIRONMENT
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ADVANCED PERMANENT MAGNET MOTOR DRIVE MODELING FOR AUTOMOTIVE APPLICATION UNDER MATLAB/SIMULINK ENVIRONMENT

机译:MATLAB / SIMULINK环境下用于汽车应用的高级永磁电动机驱动器建模

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摘要

This paper proposes an advanced permanent magnet (PM) motor drive modeling for dynamic analysis of automotive control systems with PM motor drives. To enhance the reusability of the proposed PM motor drive model, each component is modeled in an object-oriented manner according to the physical partitioning of a real drive system, and user-friendly and well-organized interfaces are also proposed. These characteristics enable this model to be used as a kind of a programming library. A multi-level modeling strategy is also proposed, which helps make a compromise between model accuracy and simulation speed without structural modification of the system model. The model and modeling strategy developed allow for a comprehensive analysis of each component and dynamic analysis of the total system. System simulation results show the practical effectiveness of the proposed modeling strategy.
机译:本文提出了一种先进的永磁(PM)电动机驱动器建模,用于对具有PM电动机驱动器的汽车控制系统进行动态分析。为了提高所提出的永磁电机驱动模型的可重用性,根据实际驱动系统的物理分区,以面向对象的方式对每个组件进行建模,并且还提出了用户友好且组织良好的界面。这些特性使该模型可以用作一种编程库。还提出了一种多级建模策略,该策略有助于在不对系统模型进行结构修改的情况下,在模型精度和仿真速度之间做出折衷。开发的模型和建模策略可对每个组件进行全面分析,并对整个系统进行动态分析。系统仿真结果表明了所提出建模策略的实际有效性。

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