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Design and optimization, steady-state and dynamic analysis of synchronous reluctance motors controlled by voltage-fed converters with nonlinear controllers

机译:具有非线性控制器的电压转换器控制同步磁阻电动机的设计与优化,稳态和动态分析

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摘要

This paper presents innovative results to improve the design and manufacture of high-performance synchronous reluctance machines. These results have been obtained from our research in analyzing and synthesizing advanced control algorithms to promote the competitiveness of three-phase synchronous reluctance machines in electric drives in comparison with permanent-magnet synchronous motors and induction machines. These results have direct application in the design and manufacture of electric- and hybrid-electric drivetrains for light-, medium-, and heavy-duty vehicles. First, we report on the dynamic optimization of medium duty synchronous reluctance machines described by nonlinear differential equations. Second, we describe a new design optimization method, based upon nonlinear electromagnetic analysis, to improve steady-state performance and to enhance the operating envelope. Highly efficient, high-speed synchronous reluctance motors, ranging from 10 kW to 100 kW, were manufactured and tested. The design methods ensure cost-effective production of a new generation of state-of-the-art synchronous reluctance motors. This paper develops a nonlinear model of synchronous reluctance motors that incorporates saturation effects. Kirchhoff's and Newton's laws are used to derive the models. The application of Park's transformation results in a set of differential equations in the rotor reference frame; the q-, d- and zero-axis voltage and current quantities are used in analysis, modeling and design. Robust controllers are developed to guarantee closed-loop system stability and attain the disturbance rejection.
机译:本文提出了创新的结果,提高了高性能同步磁阻机的设计和制造。这些结果是从我们的研究中分析和合成了先进的控制算法,以促进电动驱动器中三相同步磁阻机的竞争力与永磁同步电动机和感应机器相比。这些结果在设计和制造光,中等和重型车辆的设计和制造方面具有直接应用。首先,我们报告非线性微分方程描述的中型同步磁阻机的动态优化。其次,我们描述了一种新的设计优化方法,基于非线性电磁分析,提高稳态性能并增强操作包络。高效,高速同步磁阻电动机,范围为10千瓦至100千瓦,制造和测试。设计方法确保生产性高型式最先进的同步磁阻电动机生产。本文开发了一种非线性模型,其同步磁阻电动机包括饱和效果。 Kirchhoff的和牛顿的法律用于推导模型。公园的转换在转子参考框架中的应用产生了一组微分方程; Q-,D轴和零轴电压和电流量用于分析,建模和设计。开发了强大的控制器,以保证闭环系统稳定性并达到干扰抑制。

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