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首页> 外文期刊>SIAM journal on applied dynamical systems >A DTC Stator Flux Algorithm for the Performance Improvement of Induction Traction Motors
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A DTC Stator Flux Algorithm for the Performance Improvement of Induction Traction Motors

机译:一种DTC定子通量算法,用于诱导牵引电动机的性能改进

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摘要

In view of the speed control characteristics of induction traction motors and the problems of direct torque control (DTC) algorithms in current applications, this paper presents a DTC algorithm characterized by a symmetrical polygon flux control and a closed loop power control in the constant-torque base speed region and constant-power field-weakening region of induction traction motors. This algorithm only needs to add a stator flux control algorithm to the traditional DTC structures. This has the benefit of simplicity, while maintaining the features of traditional algorithms such as a rapid dynamic response, uncomplicated control circuit, reduced dependence on motor parameters, etc. In addition, it obtains a smoother flux trajectory that is conducive to improvement of the harmonic elimination capability, the switching frequency utilization as well as the torque and power performance in the field-weakening region. The effectiveness and feasibility of this DTC algorithm are demonstrated by both theoretical analysis and experimental results.
机译:鉴于感应牵引电动机的速度控制特性和电流应用中直接扭矩控制(DTC)算法的问题,本文介绍了一种DTC算法,其特征在于对称多边形通量控制和恒定扭矩中的闭环功率控制基本速度区域和恒定功率场 - 弱化区域的感应牵引电动机。该算法仅需要将定子通量控制算法添加到传统的DTC结构中。这具有简单性的好处,同时保持传统算法的特征,例如快速动态响应,简单的控制电路,减少对电动机参数等的依赖性等。另外,它获得了更平滑的通量轨迹,有利于改善谐波的改善消除能力,开关频率利用以及现场弱化区域中的扭矩和功率性能。通过理论分析和实验结果证明了该DTC算法的有效性和可行性。

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