Direct torque control of AC machines

R. Kanchan
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Abstract

The DTC technology has been steadily developed for induction motors initially and now in a mature stage where its adaptation in commercial products has been accepted by industry. The development focus is now toward adaptation of DTC into complex applications requiring special motor types and drive topologies. The various technology areas are special machines for high-speed applications and multiphase machines with more than three-phase windings. There are attempts to extend DTC strategies for advanced drive topologies like matrix converters, multilevel converter topologies, integrated line side converter control. The complexity in such topologies is coming from increased number of voltage vector combinations, which are available for switching, and thus, decision-making can be a complex and time-consuming process. This is typical situation in even more complex multilevel converter fed multiphase machine architecture where the number of voltage vector combinations rises exponentially with machine phase and converter voltage levels.
交流电机的直接转矩控制
异步电机的直接转矩控制技术经过了初步的稳步发展,目前已进入成熟阶段,其在商业产品中的应用已被工业所接受。目前的发展重点是使DTC适应需要特殊电机类型和驱动拓扑的复杂应用。各种技术领域是高速应用的专用机器和具有三相以上绕组的多相机器。有人尝试将DTC策略扩展到先进的驱动拓扑,如矩阵变换器、多电平变换器拓扑、集成线侧变换器控制。这种拓扑结构的复杂性来自于可用于开关的电压矢量组合数量的增加,因此,决策可能是一个复杂且耗时的过程。这是更复杂的多电平变换器馈电多相机器结构的典型情况,其中电压矢量组合的数量随着机器相位和变换器电压水平呈指数增长。
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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