Optimization of conductors arrangement in slot for alternating current winding losses reduction

COMPEL Pub Date : 2024-05-27 DOI:10.1108/compel-11-2023-0582
Belli Zoubida, Aomar Lyes
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Abstract

Purpose

The purpose of this study is to evaluate and minimize the losses of alternating current (AC) in the winding of electrical machines. AC winding losses are frequently disregarded at low frequencies, but they become a significant concern at high frequencies. This is the situation where applications require a high speed. The most significant applications in this category are electrical propulsion and drive systems.

Design/methodology/approach

An analytical model is used to predict the AC losses in the winding of electrical machines. The process involves dividing the slot into separate layers and then calculating the AC loss factor for each layer. The model aims to calculate AC losses for two different winding arrangements involving circular conductors. This application focuses on the stator winding of a permanent magnet synchronous motor that is specifically designed for electric vehicles. The model is integrated into an optimization process that makes use of the genetic algorithm method to minimize AC losses resulting from the arrangement of conductors within the slot.

Findings

This study and its findings demonstrate that the arrangement of the conductors within the slot has a comparable effect on the AC losses in the winding as the machine's geometric and physical properties. The effectiveness of electrical machines depends heavily on optimizing the arrangement of conductors in the slot to minimize AC winding losses.

Originality/value

The proposed strategy seeks to minimize AC winding losses in high-speed electric machines by providing a cost-effective and precise solution to improve energy efficiency.

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优化槽中导体排列以降低交流绕组损耗
本研究的目的是评估和尽量减少电机绕组中的交流电(AC)损耗。交流绕组损耗在低频时经常被忽视,但在高频时却成为一个重要问题。这就是需要高速运转的应用场合。这类应用中最重要的是电力推进和驱动系统。设计/方法/途径使用分析模型预测电机绕组中的交流损耗。这一过程包括将槽划分为不同的层,然后计算每一层的交流损耗因子。该模型旨在计算涉及圆形导体的两种不同绕组布置的交流损耗。该应用主要针对专为电动汽车设计的永磁同步电机的定子绕组。该模型被集成到一个优化过程中,利用遗传算法将槽内导体排列造成的交流损耗降至最低。研究结果这项研究及其结果表明,槽内导体排列对绕组交流损耗的影响与机器的几何和物理特性相当。电机的有效性在很大程度上取决于槽内导体排列的优化,以最大限度地降低交流绕组损耗。原创性/价值所提出的策略旨在通过提供一种经济高效的精确解决方案,最大限度地降低高速电机的交流绕组损耗,从而提高能效。
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