黄磊, 李渊, 陈珉烁, 杨建龙. 直驱式波浪发电用磁场调制横向磁通发电机的设计与分析[J]. 中国电机工程学报, 2025, 45(1): 330-341. DOI: 10.13334/j.0258-8013.pcsee.232160
引用本文: 黄磊, 李渊, 陈珉烁, 杨建龙. 直驱式波浪发电用磁场调制横向磁通发电机的设计与分析[J]. 中国电机工程学报, 2025, 45(1): 330-341. DOI: 10.13334/j.0258-8013.pcsee.232160
HUANG Lei, LI Yuan, CHEN Minshuo, YANG Jianlong. Design and Analysis of Magnetic Field-modulated Transverse Flux Generator for Direct-drive Wave Energy Conversion[J]. Proceedings of the CSEE, 2025, 45(1): 330-341. DOI: 10.13334/j.0258-8013.pcsee.232160
Citation: HUANG Lei, LI Yuan, CHEN Minshuo, YANG Jianlong. Design and Analysis of Magnetic Field-modulated Transverse Flux Generator for Direct-drive Wave Energy Conversion[J]. Proceedings of the CSEE, 2025, 45(1): 330-341. DOI: 10.13334/j.0258-8013.pcsee.232160

直驱式波浪发电用磁场调制横向磁通发电机的设计与分析

Design and Analysis of Magnetic Field-modulated Transverse Flux Generator for Direct-drive Wave Energy Conversion

  • 摘要: 基于直线发电机的直驱式波浪发电系统可以直接将波浪能转化为电能,具有结构简单和效率高等优点。然而,由于波浪速度较低,造成直驱式波浪发电机体积庞大和功率密度较低,为解决这个问题,该文基于磁齿轮和磁场调制电机的增速效应,结合横向磁通电机的横向磁路,提出一种用于波浪发电的新型磁场调制横向磁通直线发电机结构。首先,介绍发电机的结构、工作原理和磁场调制机理,采用多目标优化法对发电机电磁结构进行优化设计;研究不同极槽配比和调制器倾斜角度对发电机电磁性能的影响;计算发电机对应不同电枢电流的损耗和效率,对比该结构、交叉绕组结构和现有文献中横向磁通直线电机的功率密度;最后,制造样机并搭建实验测试平台,测量发电机推力和反电势,证明所提出拓扑结构的合理性和有限元计算结果的准确性。

     

    Abstract: Direct-drive wave power generation systems with linear generators as the core can directly convert wave energy into electrical energy. It has the advantages of simple structure and high efficiency. However, the wave speed is so low that direct-drive wave generators are bulky and have low power density. In order to solve this problem, combined with the transverse magnetic circuit of the transverse flux motor, this paper proposes a new magnetic field modulated transverse flux linear generator structure for wave power generation based on the speed-increasing effect of magnetic gears and magnetic field modulation motors. First, the machine structure, working principle, and magnetic field modulation mechanism are introduced. Multi-objective optimization methods are used to optimize the generator electromagnetic structure. The effects of different pole slot combinations and modulator tilt angles on the electromagnetic performance of the generator are studied. The losses and efficiency of the generator corresponding to different armature currents are calculated. The power density of the proposed structure, cross connected winding structure, and other transverse flux linear machines in existing literature are compared. Finally, a prototype is manufactured and a machine testing platform is built to measure the thrust and back electromotive force of the generator, proving the validity of the proposed topology and the accuracy of the finite element analysis results.

     

/

返回文章
返回