病媒控制
电压
扭矩
直接转矩控制
控制理论(社会学)
感应电动机
计算机科学
支持向量机
控制工程
控制(管理)
工程类
物理
人工智能
电气工程
热力学
作者
Gilielson F. da Paz,Victor F. M. B. Melo,Isaac Soares de Freitas,Reuben P. R. Sousa,Fabiano Salvadori
标识
DOI:10.1109/tpel.2024.3399656
摘要
This paper discusses a Virtual Vector - Direct Torque Control (VV-DTC) technique that employs eight active voltage vectors to emulate the virtual voltage vectors used to control the electromagnetic torque and stator flux magnitudes of a three-neutral nine-phase induction machine drive system. In this configuration, the DTC strategy must take into account the harmonic planes in order to mitigate or even nullify the low-frequency current harmonic components. It will be shown that the previous solutions discussed in the literature (that proposed the use of two and four active voltage vectors to emulate the virtual voltage vectors) are not capable of nullifying the most significant 5th and 7th harmonic components simultaneously, and only by applying eight active vectors this is possible. By means of experimental results, this paper presents a comparative analysis between the conventional DTC and VV-DTC strategies for steady- and transient-state operation. It is shown that the proposed technique reduces the phase current total harmonic distortion (THD) and torque ripple at the expense of an increase of the switching frequency, and presents similar dynamic response than the considered counterparts.
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