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On the Design of a Linear Composite Magnetic Damper

机译:线性复合电磁阻尼器的设计

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High-voltage direct current (HVdc) breakers are the key components in the realization of multiterminal HVdc grids. In the presence of fault current, these breakers should be able to deliver impulsive forces to swiftly open the metallic contacts. After the acceleration phase, the moving armature should be decelerated using controllable forces to avoid plastically deforming fragile components integrated in the system. In this paper, finite-element method-based simulation models, complimented with small-scale and large-scale experimental prototypes, were utilized to benchmark different damping topologies. It was found that a Halbach-based configuration can deliver a damping force that is almost two and a half times larger than its sequel. Its sequel, composed of vertically stacked oppositely oriented magnets, is easier to assemble and is also capable of generating a considerable damping force. Finally, it has been shown that both these schemes, inserted in a composite tube, have a potential to be used as dampers in HVdc breakers.
机译:高压直流(HVdc)断路器是实现多端HVdc电网的关键组件。在存在故障电流的情况下,这些断路器应能够提供脉冲力以快速断开金属触点。在加速阶段之后,应使用可控制的力使运动的电枢减速,以免使集成在系统中的易碎组件发生塑性变形。在本文中,基于有限元方法的仿真模型与小规模和大规模的实验原型相辅相成,被用来对不同的阻尼拓扑进行基准测试。发现基于Halbach的配置可提供的阻尼力几乎是其后续版本的两倍半。它的续集由垂直堆叠的相反方向的磁体组成,易于组装,并且还能够产生相当大的阻尼力。最后,已经表明,插入复合管中的这两种方案都有潜力用作HVdc断路器的阻尼器。

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