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Theory and Operation of a Four-Quadrant Switched Reluctance Motor Drive With a Single Controllable Switch - The Lowest Cost Four-Quadrant Brushless Motor Drive

机译:具有单个可控开关的四象限开关磁阻电动机驱动器的理论和操作-最低成本的四象限无刷电动机驱动器

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摘要

Low-cost motor drives are being sought for high-volume energy-efficient home appliances. Key to the realization of such low-cost motor drives is the reduction of the power electronic converter to the barest in terms of its components, particularly the active devices, finding the motor with the least complexity for manufacturing and a controller that can extract the desired performance from the machine and converter combination. These and other factors such as self-starting, speed control over a wide range, and, most of all, the crowning aspect of four-quadrant operation with a bare minimum number of controllable switches remain as formidable challenges for low-cost motor drive realization. An innovative four-quadrant switched reluctance motor (SRM) drive with only one controllable switch is realized in this paper, for the first time, in the opinion of the authors. The motor drive is realized using a two-phase machine and a single controllable switch converter. The theory and operation of the proposed four-quadrant SRM drive with the proposed control algorithm for its realization are described. The motor drive is modeled, simulated, and analyzed to verify its feasibility for self-starting, speed control, and for four-quadrant operation, and the simulation results are presented. Experimental results confirm the validity of the proposed control algorithm for four-quadrant control of the SRM drive. The focus of the paper is mainly directed toward the control algorithm for realizing the four-quadrant operation of the two-phase SRM drive with a single controllable switch converter.
机译:正在寻求用于大批量节能家用电器的低成本电动机驱动器。实现这种低成本电动机驱动器的关键在于,将功率电子转换器的组件(特别是有源器件)减少到最便宜的水平,从而找到制造成本最低的电动机和可以提取所需功率的控制器机器和变频器组合的性能。这些因素和其他因素,例如自启动,大范围的速度控制,以及最重要的是,四象限操作的最高方面,而可控开关的数量很少,这仍然是实现低成本电动机驱动器的巨大挑战。 。作者认为,本文首次实现了仅具有一个可控开关的创新型四象限开关磁阻电机(SRM)驱动器。电机驱动是通过两相电机和单个可控开关转换器实现的。描述了所提出的四象限SRM驱动器的原理和操作以及所提出的控制算法。对电动机驱动器进行建模,仿真和分析,以验证其在自启动,速度控制和四象限运行中的可行性,并给出了仿真结果。实验结果证实了所提出的SRM驱动器四象限控制算法的有效性。本文的重点主要针对通过单个可控开关转换器实现两相SRM驱动器的四象限操作的控制算法。

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