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首页> 外文期刊>Electric power systems research >Artificial Intelligence-based Speed Control Of Dtc Induction Motor Drives- A Comparative Study
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Artificial Intelligence-based Speed Control Of Dtc Induction Motor Drives- A Comparative Study

机译:基于人工智能的DTC感应电动机驱动器速度控制-对比研究

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摘要

The design of the speed controller greatly affects the performance of an electric drive. A common strategy to control an induction machine is to use direct torque control combined with a PI speed controller. These schemes require proper and continuous tuning and therefore adaptive controllers are proposed to replace conventional PI controllers to improve the drive's performance. This paper presents a comparison between four different speed controller design strategies based on artificial intelligence techniques; two are based on tuning of conventional PI controllers, the third makes use of a fuzzy logic controller and the last is based on hybrid fuzzy sliding mode control theory. To provide a numerical comparison between different controllers, a performance index based on speed error is assigned. All methods are applied to the direct torque central scheme and each control strategy has been tested for its robustness and disturbance rejection ability.
机译:速度控制器的设计极大地影响了电驱动器的性能。控制感应电机的常用策略是结合使用直接转矩控制和PI速度控制器。这些方案需要适当且连续的调整,因此提出了自适应控制器来代替传统的PI控制器以提高驱动器的性能。本文对基于人工智能技术的四种不同速度控制器设计策略进行了比较。两种基于常规PI控制器的调节,第三种基于模糊逻辑控制器,最后一种基于混合模糊滑模控制理论。为了提供不同控制器之间的数值比较,分配了基于速度误差的性能指标。所有方法都应用于直接转矩中心方案,并且每种控制策略的鲁棒性和干扰抑制能力都经过了测试。

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