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Stability Analysis of Deadbeat-Direct Torque and Flux Control for Permanent Magnet Synchronous Motor Drives with Respect to Parameter Variations

机译:用于参数变化的永磁同步电动机驱动的稳定性分析和永磁同步电动机驱动的磁通控制

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摘要

This paper presents a stability analysis and dynamic characteristics investigation of deadbeat-direct torque and flux control (DB-DTFC) of interior permanent magnet synchronous motor (IPMSM) drives with respect to machine parameter variations. Since a DB-DTFC algorithm is developed based on a machine model and parameters, stability with respect to machine parameter variations should be evaluated. Among stability evaluation methods, an eigenvalue (EV) migration is used in this paper because both the stability and dynamic characteristics of a system can be investigated through EV migration. Since an IPMSM drive system is nonlinear, EV migration cannot be directly applied. Therefore, operating point models of DB-DTFC and CVC (current vector control) IPMSM drives are derived to obtain linearized models and to implement EV migration in this paper. Along with DB-DTFC, current vector control (CVC), one of the widely used control algorithms for motor drives, is applied and evaluated at the same operating conditions for performance comparison. For practical analysis, the US06 supplemental federal test procedure (SFTP), one of the dynamic automotive driving cycles, is transformed into torque and speed trajectories and the trajectories are used to investigate the EV migration of DB-DTFC and CVC IPMSM drives. In this paper, the stability and dynamic characteristics of DB-DTFC and CVC IPMSM drives are compared and evaluated through EV migrations with respect to machine parameter variations in simulation and experiment.
机译:本文介绍了内部永磁同步电动机(IPMSM)驱动的稳定性分析和动态特性调查机器参数变化的驱动器的磁性直接扭矩和磁通控制(DB-DTFC)。由于基于机器模型和参数开发了DB-DTFC算法,因此应评估相对于机器参数变化的稳定性。在稳定性评估方法中,本文使用了特征值(EV)迁移,因为可以通过EV迁移来研究系统的稳定性和动态特性。由于IPMSM驱动系统是非线性的,因此无法直接应用EV迁移。因此,推导出DB-DTFC和CVC(当前矢量控制)IPMSM驱动器的操作点模型以获得线性化模型并在本文中实现EV迁移。随着DB-DTFC,电流矢量控制(CVC),在相同的操作条件下应用和评估了用于电动机驱动器的广泛使用的控制算法之一,以进行性能比较。对于实际分析,US06补充联邦测试程序(SFTP)是动态汽车驱动循环之一,转变为扭矩和速度轨迹,轨迹用于研究DB-DTFC和CVC IPMSM驱动器的EV迁移。在本文中,比较了DB-DTFC和CVC IPMSM驱动器的稳定性和动态特性,并通过关于模拟和实验的机器参数变化来通过EV迁移进行评估。

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  • 作者

    Jae Lee;

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  • 年度 2018
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  • 原文格式 PDF
  • 正文语种 eng
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