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A unique optimized double-stator permanent-magnet synchronous generator in high-power wind plants

机译:大功率风力发电场中独特的优化双定子永磁同步发电机

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synchronous generators are the most extensive generators used as electrical production component in a power plant. Many researches have been done to optimize their structure and their performances. This paper introduces a modern generation of synchronous machine. The introduced double-stator cup-rotor permanent-magnet synchronous generator (DSPMSG) was optimized, designed and simulated for high power wind farms. Its structural features and operational principles were described and its specific equations have been extracted. Analytical hierarchy process (AHP) was used to optimize the designing parameters. The optimized parameters were used to simulate the generator on Maxwell based on Finite Element Method (FEM). The no-load and full load magnetic fields were computed by 2-D FEM and the simulation results were used to validate the whole designing processes. A comparison was made between the characteristics of the designed generator and a general permanent-magnet one. Finally, it was concluded that along with less electrical losses, less weight, length and diameter and simple structure, the most important feature of the proposed generator which is its more electrical energy production in a smaller size can resolve the limited performances of ordinary synchronous generators especially in high power wind applications besides other advantageous of doubled-stator ones. (C) 2017 Elsevier Ltd. All rights reserved.
机译:同步发电机是发电厂中用作电力生产组件的最广泛的发电机。为了优化其结构和性能,已经进行了许多研究。本文介绍了现代同步电机。引入的双定子杯转子永磁同步发电机(DSPMSG)已针对大功率风电场进行了优化,设计和仿真。描述了其结构特征和工作原理,并提取了其具体方程式。使用层次分析法(AHP)来优化设计参数。优化的参数用于基于有限元方法(FEM)在Maxwell上模拟发电机。通过二维有限元法计算了空载和满载磁场,并通过仿真结果验证了整个设计过程。在设计的发电机和普通的永磁发电机之间进行了比较。最后,得出的结论是,伴随着更少的电损耗,更少的重量,长度和直径以及简单的结构,所提出的发电机的最重要的特征是在更小的尺寸下产生更多的电能可以解决普通同步发电机的有限性能。特别是在大功率风能应用中,除了双定子的其他优点。 (C)2017 Elsevier Ltd.保留所有权利。

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