使用无传感器混合控制器控制永磁无刷直流电机的速度

Mogos Hailemikal Gebrehiwot, Tole Sutikno, Samrawit Legesse Gebreslasie, Haftom Aregawi Hagos
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摘要

在大多数工业流程中,为了最大限度地降低成本并提高驱动系统的效率,生产率的不断提高使得对电机的需求不断增加。无传感器技术是首选。在运动控制行业,无刷直流(BLDC)电机与各种不同类型的电机竞争。传统的比例积分导数 (PID) 控制器难以控制 BLDC 电机特性的非线性。PID 控制器的模糊逻辑允许它在在线运行时进行自我调整。混合方法优于独立算法,因为它们可以克服自身的弱点,同时又不失优势。本研究的目的是介绍一种模糊 PI+D 控制器,该控制器可在广泛的参考速度、负载和参数变化范围内进行模拟。本文提出了一个带有速度控制器的无传感器 BLDC 电机模型。对转子速度、电磁转矩、定子反向电动势 (EMF) 和定子电流的响应进行了有效监控。仿真结果表明,本研究中介绍的混合控制器对快速负载转矩和参数波动具有很强的适应能力。此外,它还表现出卓越的动态性能,并在速度跟踪和系统稳定性方面有显著提高。通过使用所提出的混合智能控制器,系统的性能得到了提升。
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Speed control of PM brushless DC motor using sensorless hybrid controller
In most industrial processes, rising productivity necessitates increased demand on electrical motors in order to minimize costs and improve drive system efficiency. The sensorless technique is preferred. Brushless DC (BLDC) motors compete with a wide range of different motor types in the motion control industry. The nonlinearity of BLDC motor characteristics is challenging to manage with a traditional proportional integral derivative (PID) controller. The PID controller's fuzzy logic allowed it to tune itself while operating online. Hybrid approaches outperform stand-alone algorithms because they can overcome their weaknesses without losing their advantage. The purpose of this study is to present a fuzzy PI+D controller that is simulated over a wide range of reference speeds, loads, and parameter variations. This paper presents a model of a sensorless BLDC motor with a speed controller. The responses of the rotor speed, electromagnetic torque, stator back electromotive force (EMF), and stator currents are effectively monitored. The findings from the simulation indicate that the hybrid controller presented in this study exhibits resilience to rapid load torque and parameter fluctuation. Furthermore, it demonstrates superior dynamic performance and exhibits notable enhancements in speed tracking and system stability. The performance of the system is enhanced through the utilization of the proposed hybrid intelligent controller.
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