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首页> 外文期刊>Advances in Electrical and Computer Engineering >Decoupled Speed and Torque Control of IPMSM Drives Using a Novel Load Torque Estimator
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Decoupled Speed and Torque Control of IPMSM Drives Using a Novel Load Torque Estimator

机译:使用新型负载转矩估算器对IPMSM驱动器进行速度和转矩解耦控制

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摘要

This paper proposes decoupled speed and torque control of interior permanent magnet synchronous motor (IPMSM) drives using a novel load torque estimator (LTE). The proposed LTE is applied for computing a load torque and yielding a feed-forward value in the speed controller to separate the torque control from the speed control. Indirect flux weakening using direct current component is obtained for high speed operation of the IPMSM drive, and its value for maximum torque per ampere (MTPA) control in constant torque region is also used. LTE uses values of direct and quadrature currents to improve the behavior of the speed controller under the reference tracking and torque disturbances. The complete IPMSM drive by Matlab/Simulink is built. The effectiveness of the proposed control scheme using an experimental setup of the complete drive system implemented on a DSP-DS1102 control board is confirmed. Extensive results over a wide speed range are verified. The efficacy of the proposed method is confirmed in comparison to a conventional PI controller under both the reference speed tracking and load torque disturbance.
机译:本文提出了一种使用新型负载转矩估算器(LTE)的内部永磁同步电动机(IPMSM)驱动器的速度和转矩控制解耦的方法。提出的LTE被应用于计算负载转矩并且在速度控制器中产生前馈值以将转矩控制与速度控制分开。对于IPMSM驱动器的高速运行,获得了使用直流分量的间接磁通减弱的功能,并且还使用了它在恒定转矩区域中的最大每安培转矩(MTPA)控制值。 LTE使用直流和正交电流值来改善速度控制器在参考跟踪和扭矩干扰下的行为。 Matlab / Simulink构建了完整的IPMSM驱动器。使用在DSP-DS1102控制板上实现的完整驱动系统的实验设置,可以验证所提出的控制方案的有效性。广泛的速度范围内的广泛结果得到验证。与传统的PI控制器相比,在参考速度跟踪和负载转矩扰动下,该方法的有效性得到了确认。

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