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A Statistical Solution to Efficiently Optimize the Design of an Inverter-fed Permanent Magnet Motor

机译:统计解决方案,以有效优化逆变器馈电永磁电动机的设计

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This paper provides the fundamentals of integrated motor-drive system design knowledge which could be used as a basis to change the existing machine design approach from being a separate machine design tool to a more advanced engineering package. Various user's preferences including motor performances at transient, rated and flux weakening operations along with the inverter quality are studied by means of a competent co-simulation process which utilizes FEM, MATLAB and SIMULINK packages to build the framework based on which magnetic, electric and electronic devices and quantities are modeled, simulated and post-processed. A case study of an interior permanent magnet motor connected to a field oriented controlled drive is investigated and the design process concepts are developed by means of a comprehensive statistical analysis. The initial goal is to reduce the search space of the optimal region. It is shown that incorporating the inverter effects into the design process changes the idea of an optimum motor design and not only the design parameters but also the expectations from motor performance have to be revised. In fact, an integrated motor-drive system design process regarding the best motor operations in the transient, rated and flux weakening modes is targeted as the ultimate goal. A set of practical solutions are proposed to fulfill any motor operations requirement while keeping the inverter efficiency at the highest possible level.
机译:本文提供了集成的电动驱动系统设计知识的基础,可作为改变现有机器设计方法的基础,从而将独立的机器设计工具更加先进的工程包。通过使用有限的共仿真过程,研究了各种用户在瞬态,额定和助焊剂弱化操作中以及逆变器质量的较逆变器质量的偏好。通过使用FEM,MATLAB和SIMULINK封装来构建基于磁,电气和电子的框架的框架设备和数量是建模,模拟和后处理的。研究了连接到场取向控制驱动器的内部永磁电动机的案例研究,并且通过综合统计分析开发了设计过程概念。初始目标是减少最佳区域的搜索空间。结果表明,将逆变器效应结合到设计过程中改变了最佳电机设计的思想,而不仅仅是设计参数,而且还必须修改电动机性能的预期。事实上,关于瞬态,额定和通量弱化模式中最佳电机操作的集成电动驱动系统设计过程是终极目标的。建议一组实用解决方案来满足任何电机操作要求,同时保持最高水平的逆变器效率。

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