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首页> 外文期刊>Turkish Journal of Electrical Engineering and Computer Sciences >Design of a three-phase multistage axial flux permanent magnet generator for wind turbine applications
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Design of a three-phase multistage axial flux permanent magnet generator for wind turbine applications

机译:风力涡轮机应用的三相多级轴向磁通永磁发电机的设计

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Design of a three-phase multistage axial flux permanent magnet generator for wind turbine applications Authors: MUHAMMAD MANSOOR ASHRAF, TAHIR NADEEM MALIK Abstract: Presently, axial flux permanent magnet machines are becoming popular and are being deployed actively for low speed applications. This paper presents an improved model of a multistage axial flux permanent magnet generator (AFPMG). The multistage AFPMG consists of multiple stator and rotor discs. There are three identical 1-phase stator discs and four in-phase rotor discs in the proposed multistage AFPMG. In this research, 4 case studies were analyzed on the design of the multistage AFPMG. First, a phase shift model (PSM) positions the three 1-phase stator discs to behave as a 3-phase generator. Actually, the PSM computes phases for three stator discs in order to establish phase shift of 120$^{circ}$ between each two phases. The implementation of the presented model in the multistage AFPMG reduces the diameter of the stator disc three times as compared to the conventional 3-phase AFPMG with identical rated specifications. Second, the voltage waveform of the AFPMG was analyzed for harmonic contents and the percentages of 3rd and 5th harmonics were computed. The test results show that 3rd and 5th harmonics were reduced to 10.7% and 0.54%, respectively, in voltage waveform. Third, the proposed multistage AFPMG was designed considering begin-to-end winding connections of the stator disc. While adopting begin-to-end connection, the number of poles of the AFPMG are doubled, which ultimately increases air-gap flux density and thus the terminal voltage of the stator disc and operating shaft speed is halved. The test results show that the torque-to-weight ratio parameter of the designed AFPMG was improved by using a begin-to-end connection for the stator disc. Fourth, the increased air-gap flux density also improves the power density parameter of the AFPMG with a begin-to-end winding connection. Moreover, a prototype model of a 1200-W multistage AFPMG was designed and fabricated while following PSM and begin-to-end winding connection and tested. Thus the test results verify the proposed model of the multistage AFPMG for wind turbine applications.
机译:风力涡轮机应用中的三相多级轴向磁通永磁发电机的设计作者:MUHAMMAD MANSOOR ASHRAF,TAHIR NADEEM MALIK摘要:目前,轴向磁通永磁电机正变得越来越流行,并且正积极地部署在低速应用中。本文提出了一种多级轴向磁通永磁发电机(AFPMG)的改进模型。多级AFPMG由多个定子和转子盘组成。建议的多级AFPMG中有三个相同的一相定子盘和四个同相转子盘。在这项研究中,对多级AFPMG的设计进行了4个案例研究。首先,相移模型(PSM)将三个一相定子盘定位为三相发电机。实际上,PSM计算三个定子盘的相位,以便在每两个相位之间建立120 $ ^ {circ} $的相移。与具有相同额定规格的传统三相AFPMG相比,本模型在多级AFPMG中的实现将定子盘的直径减小了三倍。其次,分析AFPMG的电压波形的谐波含量,并计算3次和5次谐波的百分比。测试结果表明,电压波形中的三次谐波和第五次谐波分别降低到10.7%和0.54%。第三,提出的多级AFPMG在设计时考虑了定子圆盘的始端到端绕组连接。在采用从头到尾的连接时,AFPMG的极数增加了一倍,最终增加了气隙磁通密度,从而使定子盘的端电压和工作轴速度减半。测试结果表明,通过在定子盘上使用始端到端部连接,设计的AFPMG的扭矩重量比参数得到了改善。第四,增加的气隙磁通密度还改善了从头到尾的绕组连接的AFPMG的功率密度参数。此外,在遵循PSM和始端到端绕组连接并进行测试的同时,设计并制造了1200 W多级AFPMG的原型模型。因此,测试结果验证了针对风力涡轮机应用提出的多级AFPMG模型。

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