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The effect of the magnet placement for an internal permanent magnet wave energy converter generator

机译:磁体放置对内部永磁波能量转换器发电机的影响

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In this paper the effect of the magnet placement on the torque generaton of an internal permanent magnet (IPM) machine used as a WEC generator is investigated. Firstly, a v-shaped IPM machine is used as an initial WEC generator and the generator operation is established for a selected wave climate, through simulations. In order to evaluate the effect of the magnet placement and configuration, four sweep cases which have several stages are analysed. The generator behavior is obtained using finite element analysis (FEA) calculations. The v-shaped magnet sweeps indicate that placing the permanent magnets closer to the airgap result in torque improvement, therefore the inset magnet configuration is also evaluated. The inset design provide a torque improvement of up till 15% compared with the initial WEC generator. When the inset generator used as the WEC generator, the current value to reach the maximum operation point decreases approximately 14%, which in turn improves the total WEC electrical system losses by 23% for the maximum operating point.
机译:在本文中,研究了磁体放置对用作WEC发电机的内部永磁(IPM)机器的转矩产生的影响。首先,使用v形IPM机器作为初始WEC发电机,并通过仿真针对选定的波浪气候建立发电机的运行。为了评估磁体放置和配置的效果,分析了具有多个阶段的四个扫掠情况。使用有限元分析(FEA)计算可获得发电机行为。 V形磁体扫掠表明,将永磁体放置在更靠近气隙的位置可改善扭矩,因此,还可以评估嵌入式磁体的配置。与最初的WEC发电机相比,插入式设计可将扭矩提高多达15%。当将嵌入式发电机用作WEC发电机时,达到最大工作点的电流值降低约14%,这又将最大工作点的WEC电气系统总损耗降低了23%。

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