双定子开关磁通永磁电机的损耗和效率估算

Q4 Engineering
C. Awah, O. Okoro, A. Onah, G. Diyoke
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引用次数: 0

摘要

本研究估计并介绍了具有不同转子极数的双定子永磁电机的损耗,如转子铁和定子铁损耗、磁体涡流损耗以及效率。这项电流调查对于电机设计者量化给定双定子电机各个部分的损耗量以及更好地了解电机的输出效率至关重要。采用时间步进有限元分析(TS-FEA)程序,利用ANSYS-MAXWELL仿真软件进行计算。具有相同定子齿数/极数(Ps)和不同转子极数(Pr)的比较机器被指定为:6Ps/10Pr、6Ps/11Pr、6 Ps/13Pr和6 Ps/14Pr。6Ps/10Pr、6Ps/11Pr、6 PS/13Pr和6Ps/14Pr机型在额定电流和运行基本速度下的预测总损耗值分别为13.02瓦、13.13瓦、13.539瓦和13.537瓦。各机型在额定工况下的相应效率分别为:81.76%、88.17%、86.95%和78.61%。结果表明,给定机器的损耗大小在很大程度上取决于转子极数,因此也取决于机器的运行速度、电负载和机器的转子角位置等因素。还发现,所研究的机器的电转中的损耗波形周期(Nc)的数量将取决于其定子和转子布置。性能最好的比较机型是具有11和13个转子极数的机型,而效率最低的机型是具有14个转子极号的机型。最重要的是,6P/10Pr和6P/14Pr的特点是具有大量的脉动或波纹,这对机器的整体性能不利。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Estimation of losses and efficiency of double-stator switched flux permanent magnet machines
Losses such as rotor iron and stator iron losses, magnet eddy current loss, as well as efficiency of a double stator permanent magnet machine having varying rotor pole numbers is estimated and presented in this study. This current investigation would be vital for electrical machine designers in quantifying the amount of losses in the various sections of a given double stator electric machine and as well provide better insight on resulting output efficiency of the machine. Time-stepping finite element analysis (TS-FEA) procedure is adopted in the calculations using ANSYS-MAXWELL simulation software. The compared machines having the same stator teeth/pole number (Ps) and different rotor pole (Pr) numbers are designated as: 6Ps/10Pr, 6Ps/11Pr, 6Ps/13Pr and 6Ps/14Pr. The predicted total loss values at rated current and operating base speed is 13.02 Watts, 13.13 Watts, 13.539 Watts, 13.537 Watts, from the 6Ps/10Pr, 6Ps/11Pr, 6Ps/13Pr and 6Ps/14Pr machine types, respectively. The corresponding efficiency of the machine types at rated working conditions is: 81.76%, 88.17%, 86.95% and 78.61%, respectively. The results show that magnitude of losses in a given machine would largely depend upon factors such as number of rotor poles and hence, the machine’s operating speed, electric loading and angular rotor position of the machine, etc. It is also found that the number of loss waveform cycles (Nc) in an electric revolution of the investigated machine would depend upon its stator and rotor arrangements. The most performing compared machine types are the ones that have 11- and 13-rotor pole numbers, while the least amount of efficiency is obtained from the machine type that has 14-rotor pole number. Above all, the 6Ps/10Pr and 6Ps/14Pr are characterized with high amount of pulsations or ripples and this is detrimental to the overall performance of the machines.
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来源期刊
Nigerian Journal of Technological Development
Nigerian Journal of Technological Development Engineering-Engineering (miscellaneous)
CiteScore
1.00
自引率
0.00%
发文量
40
审稿时长
24 weeks
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