Development of a nonlinear loss minimization control of an IPMSM drive with flux estimation

B. Patel, M. Uddin
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引用次数: 5

Abstract

This paper presents a nonlinear speed and loss minimization control (LMC) of an interior permanent magnet synchronous motor (IPMSM) drive to achieve both high efficiency and high dynamic performance. The control strategy is based on an input-output feedback linearization which ensures high performance speed control while minimizing the losses. Among all the losses, copper and iron losses can be precisely controlled and minimized by an optimal control of the d-axis stator current (id). The proposed LMC is developed based on motor model to produce optimum id for loss minimization. The global stability of the proposed drive system is verified through a Lyapunov's stability analysis. Also, a novel observer is applied to estimate the permanent magnet flux linkage (Ψ) online. The performance of the proposed nonlinear speed and LMC is demonstrated in simulation at different operating conditions. A performance comparison of the proposed LMC control scheme with the conventional control scheme is also provided.
基于磁链估计的永磁同步电动机非线性损耗最小控制方法的研究
本文提出了一种内嵌式永磁同步电机(IPMSM)驱动器的非线性速度和损耗最小化控制方法,以实现高效率和高动态性能。控制策略是基于输入输出反馈线性化,以确保高性能的速度控制,同时最大限度地减少损失。在所有损耗中,铜和铁的损耗可以通过最优控制d轴定子电流(id)来精确控制和最小化。提出了基于电机模型的LMC,以产生最优的id以实现损耗最小化。通过李雅普诺夫稳定性分析验证了所提驱动系统的全局稳定性。同时,提出了一种新的观测器,用于在线估计永磁通链(Ψ)。在不同的运行条件下,仿真验证了所提出的非线性速度和LMC的性能。并将所提出的LMC控制方案与传统控制方案进行了性能比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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