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Optimisation and Design Performance of a Small-Scale DC Vernier Reluctance Machine for Direct-Drive Wind Generator Drives

机译:直驱风力发电机驱动小型直流游标磁阻电机的优化设计性能

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The study begins with a proposal to design a small-scale DC Vernier reluctance machine (DC-VRM) for direct-drive wind generator drives. The motivation centres on the increasing need for renewable energy technologies, as well as the quest for non-PM and gearless wind generator drives upon which the DC-VRM is uniquely compatible. A global optimisation is first undertaken based on solutions from 2D finite element modelling (FEM) to produce optimal benchmark designs (OBDs). The OBDs are further evaluated for independent performance improvement of the torque ripple using the simple rotor tooth-pairing technique. The findings show that the torque ripple can be drastically reduced when absolved from the integrated optimisation process. On the average, at 0.8 tooth-paring ratio, the torque ripple reduces by at least by 50 %, with observation of special quid pro quo effects in torque ripple and average torque generation of this machine. Already, 3D FEM simulations have been issued to draw out the end-effect discrepancies, while laboratory validation is still pending.
机译:该研究始于为直接驱动风力发电机驱动器设计小型直流游标磁阻电机(DC-VRM)的建议。其动机集中在对可再生能源技术的日益增长的需求上,以及对与DC-VRM唯一兼容的非PM和无齿轮风力发电机驱动器的追求。首先基于2D有限元建模(FEM)的解决方案进行全局优化,以生成最佳基准设计(OBD)。使用简单的转子齿对技术,可以进一步评估OBD,以提高转矩脉动的独立性能。研究结果表明,从集成优化过程中消除转矩脉动可以大大降低。平均而言,在修齿比为0.8的情况下,转矩脉动至少减少了50%,同时观察到该机器的转矩脉动和平均转矩产生方面的特殊动静效果。已经发布了3D FEM仿真,以找出最终效果差异,而实验室验证仍在进行中。

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