Performance Enhancement of Field Oriented AC Drives using Adaptive Controllers

H. Rehman, H. Nounou
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Abstract

The decoupled control of torque and flux has made field oriented control an attractive choice for high performance induction motor drives. However, changes in the speed tracking trajectory and external disturbances make it difficult to achieve an acceptable closed-loop tracking performance, especially when traditional linear controllers are used. This paper addresses this issue by applying direct and indirect adaptive fuzzy controllers for performance enhancement of variable speed control of induction machines. Theoretical background of these schemes is outlined, and then a simulation test bench has been established for performance evaluation under a variety of operating conditions. Such conditions include changes in the speed reference trajectory and presence of external disturbances, such as load changes. A comparison has been made among direct adaptive, indirect adaptive and direct fuzzy controllers to show the potential of applying adaptive fuzzy control techniques to induction machines.
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利用自适应控制器增强磁场定向交流驱动器的性能
转矩和磁链的解耦控制使磁场定向控制成为高性能感应电机驱动的一个有吸引力的选择。然而,速度跟踪轨迹的变化和外部干扰使得难以实现可接受的闭环跟踪性能,特别是当使用传统的线性控制器时。本文将直接自适应模糊控制器和间接自适应模糊控制器应用于异步电机的变速控制中,以提高其性能。概述了这些方案的理论背景,并建立了仿真试验台,对各种工况下的性能进行了评价。这些条件包括速度参考轨迹的变化和外部干扰(如负载变化)的存在。对直接自适应模糊控制器、间接自适应模糊控制器和直接模糊控制器进行了比较,说明了自适应模糊控制技术在感应电机中的应用潜力。
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