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Efficiency evaluation of five-phase outer- rotor fault-tolerant BLDC drives under healthy and open-circuit faulty conditions

机译:在健康和开路故障条件下对五相外转子容错BLDC驱动器的效率评估

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摘要

Fault tolerant motor drives are an interesting subject for many applications such as automotive industries and wind power generation. Among different configurations of these systems, five-phase BLDC drives are gaining more importance which is because of their compactness and high efficiency. Due to replacement of field windings by permanent magnets in their rotor structure, the main sources of power losses in these drives are iron (core) losses, copper (winding) losses, and inverter unit (semiconductor) losses. Although low amplitude of power losses in five-phase BLDC drives is an important aspect for many applications, but their efficiency under faulty conditions is not considered in previous studies. In this paper, the efficiency of an outer-rotor five phase BLDC drive is evaluated under normal and different faulty conditions. Open-circuit fault is considered for one, two adjacent and two non-adjacent faulty phases. Iron core losses are calculated via FEM simulations in Flux-Cedrat® software, and moreover, inverter losses and winding copper losses are simulated in MATLAB® environment. Experimental evaluations are conducted to evaluate the efficiency of the entire BLDC drive which verifies the theoretical developments.
机译:容错电动机驱动器是许多应用(例如汽车行业和风力发电)中有趣的主题。在这些系统的不同配置中,由于其紧凑性和高效率,五相BLDC驱动器变得越来越重要。由于用转子结构中的永磁体代替了励磁绕组,这些驱动器中的主要功率损耗来源是铁(铁芯)损耗,铜(绕组)损耗和逆变器单元(半导体)损耗。尽管五相BLDC驱动器中的低功率损耗幅度是许多应用的重要方面,但以前的研究并未考虑在故障条件下的效率。在本文中,评估了在正常和不同故障条件下外转子五相BLDC驱动器的效率。在一个,两个相邻和两个不相邻的故障相中考虑开路故障。铁芯损耗通过Flux-Cedrat®软件中的FEM仿真进行计算,此外,逆变器损耗和绕组铜损耗在MATLAB®环境中进行仿真。进行了实验评估,以评估整个BLDC驱动器的效率,从而验证了理论发展。

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