Selective magnet assembly assisted by an automated warehouse system: Algorithms, performance and industry 4.0 readyness

Selective magnet assembly assisted by an automated warehouse system: Algorithms, performance and industry 4.0 readyness
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自动化仓库系统辅助的选择性磁体组装:算法、性能和工业 4.0 准备情况

DOI:
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发表时间:
2017
期刊:
International Electric Drives Production Conference
影响因子:
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通讯作者:
J. Franke
J. Franke
中科院分区:
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文献类型:
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作者:
A. Meyer;A. Mayr;N. Malygin;Yixiao Zhang;J. Franke

文献摘要

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根据拓扑结构的不同,永磁同步电机(PMSM)会受到所用磁体质量偏差的影响。这些可能导致运行特性不足,如低功率输出,低能源效率,因此过热,强烈的振动和噪音。特别是拓扑结构,如哈尔巴赫阵列转子,强烈依赖于均匀的磁场,理想情况下,在工作气隙中有充分的磁通浓度。作为一种具有成本效益的制造这些特殊拓扑的解决方案,需要对磁体进行100%的测试,提出了一种优化仓库管理的算法和FAPS磁体内部物流仓库系统的图形工业4.0就绪用户界面。作为径向磁通拓扑磁场补偿的一个实例和第一个建议,提出了一种基于矢量加法的空间磁矩偏差补偿算法。
Permanent magnet synchronous motors (PMSM) suffer, depending on the topology, from quality deviations of the used magnets. These can result in insufficient running characteristics, such as low power output, low energy efficiency, consequently excessive heat, strong vibrations and noise. Especially topologies, such as halbach array rotors, are strongly reliant on an even magnetic field with ideally a full flux concentration in the working air gap. As a solution for cost efficient manufacturing of these special topologies, requiring a 100 % test of magnets, an algorithm for optimized warehouse management and a graphic industry 4.0 ready user interface for the FAPS magnet intralogistics warehouse system is presented. As an example and first suggestion for compensation of magnetic fields in radial flux topologies, a vector addition based algorithm for the compensation of spatial magnetic moment deviations is developed.