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Design and analysis of a novel topology for slotless brushless DC (BLDC) motors with enhanced torque and efficiency

机译:设计和分析具有更高扭矩和效率的无槽无刷直流 (BLDC) 电机的新型拓扑结构

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摘要

A novel high-torque slotless brushless DC (BLDC) motor is proposed. The proposed topology has a unique concentrated winding structure and accordingly the motor design is effectively modified with its dual-rotor structure. The rotor structure of the proposed motor may be modified itself and form three different topologies. First, the basic structures of the new slotless BLDC motor and its operation principle are described. Then, design methodology of the proposed motor is explained. Initial analysis of the motor is subsequently conducted using 2D finite element (FE) simulations. Next, design parameters of the proposed motor are further optimized using Salp algorithm. The proposed topologies are compared with the conventional single and dual-rotor structures. Finally, experimental prototype is built for verification. The simulation and experimental results exhibit that the proposed slotless BLDC motor has high torque and efficiency in comparison with the conventional structures and may be a good candidate for small-sized BLDC motors. Moreover, the results show that the proposed BLDC motor has nearly ideal back-EMF which makes sensorless methods more efficient for the proposed motor.
机译:该文提出一种新型高扭矩无槽无刷直流(BLDC)电机。所提出的拓扑结构具有独特的集中绕组结构,因此其双转子结构有效地修改了电机设计。所提出的电机的转子结构可以自行修改并形成三种不同的拓扑结构。首先,介绍了新型无槽BLDC电机的基本结构及其工作原理;然后,对所提电机的设计方法进行了阐述。随后使用二维有限元(FE)仿真对电机进行初步分析。然后,利用Salp算法进一步优化所提电机的设计参数。将所提出的拓扑结构与传统的单转子和双转子结构进行了比较。最后,构建实验原型进行验证。仿真和实验结果表明,与传统结构相比,所提出的无槽无刷直流电机具有较高的扭矩和效率,是小型无刷直流电机的良好候选者。此外,结果表明,所提出的BLDC电机具有近乎理想的反电动势,这使得所提出的电机的无传感器方法更加高效。

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