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Improving Torque Control Accuracy and Dynamics for High Power or High Speed Induction Machine Drives that Inherently Operate at Low Switching-to-Fundamental Frequency Ratios

机译:固有地以低开关频率至基本频率比工作的大功率或高速感应电机驱动器,提高了转矩控制的精度和动态性能

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High power applications with low switching frequencies as well as high speed applications with high fundamental frequencies operate at low switching-to-fundamental (S2F) frequency ratios. With low S2F frequency ratios, it is challenging to achieve high torque control accuracy and dynamic performance. This paper identifies control issues that yield performance degradation at low S2F frequency ratios, for traditional field oriented control (FOC) and for deadbeat-direct torque and flux control (DB-DTFC) induction machine drives. By eliminating the synchronous reference frame current regulation, DB-DTFC demonstrates advantages to achieve a more desirable torque control performance in low-S2F-ratio applications. Three progressively more accurate DB-DTFC torque models are compared in terms of torque control accuracy and computation time to FOC and standard high switching frequency DB-DTFC. A general guideline is proposed to select the most suitable model for DB-DTFC drives at an arbitrary S2F ratio for high power or high speed applications.
机译:具有低开关频率的高功率应用以及具有高基频的高速应用都以较低的开关至基本(S2F)频率比工作。在低S2F频率比的情况下,实现高转矩控制精度和动态性能具有挑战性。本文针对传统的磁场定向控制(FOC)和无差拍直接转矩和磁通量控制(DB-DTFC)感应电机驱动器,确定了在低S2F频率比下导致性能下降的控制问题。通过消除同步参考框架电流调节,DB-DTFC展示了在低S2F比率应用中实现更理想的转矩控制性能的优势。在FOC和标准高开关频率DB-DTFC的扭矩控制精度和计算时间方面,比较了三个逐渐更精确的DB-DTFC扭矩模型。提出了一条通用指南,以任意的S2F比率为DB-DTFC驱动器选择最适合的型号,以用于大功率或高速应用。

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