无刷直流(BLDC)电机综合调查:现状、先进控制策略和利用系统

Suhair Akram, Mohanned Aljanabi
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引用次数: 0

摘要

在动力应用领域,特别是在汽车、泵送和滚动领域,人们对使用无刷直流(BLDC)电机的偏好值得注意。预测显示,到 2030 年,无刷直流电机将取代传统感应电机,成为工业动力传输领域的主导力量。然而,伴随这一转变的是无刷直流电机环境中的关键问题和尚未解决的研究挑战。目前,这些电机在实现高级容错、减少电磁干扰、降低声噪以及缓解磁通和转矩波动方面遇到了障碍。在过去五年的最新文献研究中,无刷直流电机控制器和设计领域的探索明显不足。此外,一些关键领域,如现有矢量控制方案的比较研究、容错控制的增加、无刷直流电机控制器内部电磁干扰的衰减以及其他关键要素,仍未被发现。这些研究空白促使我们进行深入研究,以解决与无刷直流电机相关的基本问题。由于无刷直流电机可靠、简单、节能,它们已迅速成为电动汽车(EV)应用的首选电机。这些策略包括容错控制、减少电磁干扰、场定向控制 (FOC)、直接转矩控制 (DTC)、电流整形、输入电压控制、智能控制、驱动逆变器拓扑结构,以及旨在最大限度减少转矩不规则性的基本运行原理。此外,本研究还介绍了无刷直流电机的历史沿革、无刷直流电机的分类、其结构的复杂性、数学建模以及各行业使用无刷直流电机的标准。
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A comprehensive investigation of brushless direct current (bldc) motors: current state, advanced control strategies, and utilization systems
In the field of dynamic applications, specifically within automotive, pumping, and rolling sectors, there exists a noteworthy preference for the use of Brushless Direct Current (BLDC) motors. Projections show that, by the year 2030, BLDC motors are poised to supersede classic induction motors as the dominating force in industrial power transmission. This transformation, however, is accompanied by crucial issues and unresolved research challenges in the environment of BLDC motors.The core concern revolves around the dependability and endurance of BLDC motors. These motors presently encounter obstacles in achieving advanced fault tolerance, reduced electromagnetic interference, lowered acoustic noise, as well as mitigated flux and torque fluctuations. The path of closed-loop vector control emerges as a possible technique to address these challenges.In recent literature studies spanning the previous five years, a striking scarcity of exploration in the domain of BLDC motor controllers and design becomes clear. Furthermore, key areas such as the comparative study of existing vector control schemes, the increase of fault tolerance control, the attenuation of electromagnetic interference inside BLDC motor controllers, and other pivotal elements remain undiscovered. These research lacunae serve as a motivator for the undertaking of an intensive investigation to face the fundamental issues related with BLDC motors. BLDC motors have quickly become the motor of choice for electric vehicle (EV) applications due to the fact that they are reliable, simple, and energy efficient.This detailed survey goes deep into numerous sophisticated control strategies for BLDC motors. These encompass fault tolerance control, electromagnetic interference reduction, field orientation control (FOC), direct torque control (DTC), current shaping, input voltage control, intelligent control, drive-inverter topology, and the underlying operational principles aimed at the minimization of torque irregularities. Additionally, the study goes through the historical narrative of BLDC motors, the categorization of BLDC motor kinds, their structural complexity, mathematical modeling, and the standards that govern BLDC motor uses in varied industries.
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