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Quantitative Analysis of Tubular Dual-Armature Switched Flux Permanent Magnet Machines for Shock Absorbers

机译:用于减震器的管状双电枢开关通量永磁机的定量分析

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In recent years, dual-armature switched flux permanent magnet machines (DASFPMMs) were proposed, of which both primary and secondary are assembled with armature windings. It showed that such machines enjoy the merits of high force density and good fault tolerant capability. However, the practical significances of DASFPMMs remain unknown. This paper quantitatively analyzes the tubular DASFPMMs for the application of vehicular shock absorbers. The active skyhook strategy is employed to control the machines, and the mover vibration is determined through the test cycle of vehicles. Keeping the damping coefficient components produced by primary and secondary windings equal, the machine parameters are optimized to maximize the total damping coefficient under the specific thermal limitation. The optimized result shows the tubular DASFPMM can exhibit 2295 Ns/m damping coefficient and 1623 kNs/m4 damping density under the 0.24 m/s amplitude vibration velocity and 120 °C maximum winding temperature.
机译:近年来,提出了双衔铁开关磁通永磁机(DASFPMM),其中初级和次级都与电枢绕组组装。它表明,这种机器享有高力密度和良好的容错能力的优点。然而,DASFPMM的实际意义仍然是未知的。本文定量分析管状DASFPMM,以施加车辆减震器。采用活跃的Skyhook策略来控制机器,通过车辆的测试循环确定动器振动。保持由初级和次级绕组产生的阻尼系数部件等于,机器参数经过优化,以最大化特定热限制下的总阻尼系数。优化结果显示管状DASFPMM可以展示2295ns / m阻尼系数和1623kns / m 4 在0.24米/升振幅振动速度下阻尼密度和120°C最大绕组温度。

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