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首页> 外文期刊>IEEE Transactions on Industrial Electronics >Optimal Design of a Novel Single-Phase 8-Slot 8-Pole Tubular Electromagnetic Shock Absorber to Harvest Energy
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Optimal Design of a Novel Single-Phase 8-Slot 8-Pole Tubular Electromagnetic Shock Absorber to Harvest Energy

机译:新型单相8槽8极管状电磁减震器的优化设计

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摘要

Based on the dimensions and thresholds of power and power density of a commercial shock absorber in the Korando car (an SUV branch), a single-phase 8-slot 8-pole tubular permanent magnet (PM) machine was designed and fabricated. The main focus of this paper is on the increase of output power in a given space and reduction of the volume. This is successfully solved using a novel structure for PM and considering a number of slot-pole combinations. Furthermore, a multiobjective optimization is performed to find the tradeoff between various objectives. The experimental results reveal that the proposed machine can possibly regenerate a maximum of 339.95 W and an average of 96.67 W in terms of its output power. Considering the active volume, which includes PM, iron core, pure copper, and an electromagnetic air gap, the estimated maximum and average power density are 0.311 and 0.087 W/cm(3), respectively. Despite these satisfactory results, one of the major drawbacks to exploiting this machine is its high electromagnetic force, which causes negative effects on safety and driving comfort. With the aim to commercialize the proposed device, further work will be concentrated on the reduction of electromagnetic force and on performance of the road tests.
机译:根据Korando汽车(SUV分支)中商用减震器的尺寸和功率阈值以及阈值,设计并制造了单相8槽8极管状永磁体(PM)机器。本文的主要重点是在给定空间中增加输出功率并减小体积。使用用于PM的新型结构并考虑许多缝隙极点组合,可以成功解决此问题。此外,执行多目标优化以找到各种目标之间的折衷。实验结果表明,所提议的机器在其输出功率方面可能最多可再生339.95 W,平均可再生96.67W。考虑到有效体积,其中包括PM,铁芯,纯铜和电磁气隙,估计的最大和平均功率密度分别为0.311和0.087 W / cm(3)。尽管获得了这些令人满意的结果,但使用该机器的主要缺点之一是其高电磁力,这会对安全性和驾驶舒适性造成负面影响。为了使所提议的设备商业化,进一步的工作将集中在减小电磁力和路测性能上。

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