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Minimum Bounds on the Number of Electromagnets Required for Remote Magnetic Manipulation

机译:远程电磁操纵所需的电磁体数量的最小界限

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摘要

Numerous magnetic-manipulation systems have been developed to control objects in relatively large workspaces. These systems vary in their number of electromagnets, their configuration, and their limitations. To date, no attempt has been made to rigorously quantify how many electromagnets are required to perform a given magnetic manipulation task. For some tasks, such as controlling the field at a point, the answer is clear: the same number as dimension of control. For tasks that apply magnetic forces on an object, the answer is less clear, and some systems, which have more control magnets than kinematic degrees of freedom (DOFs), have demonstrated unexpected singularities that only arise at specific object orientations. This paper provides a general analysis for static electromagnetic systems rooted in the governing magnetic equations and proves an unintuitive result. That is, if only magnetic fields and forces are used to control an unconstrained magnetic object, four magnetic sources are required for 3-DOF force control and eight magnetic sources are required for orientation-independent 5-DOF force and heading control.
机译:已经开发出许多磁操纵系统来控制相对较大的工作空间中的物体。这些系统的电磁体数量,配置和限制各不相同。迄今为止,还没有尝试严格地量化执行给定的磁操纵任务需要多少个电磁体。对于某些任务,例如控制某个点的字段,答案很明确:与控件的维数相同。对于在物体上施加磁力的任务,答案还不太清楚,而且某些系统的控制磁铁比运动自由度(DOF)多,它们显示出意外的奇点,仅在特定的物体方向上出现。本文对基于控制磁方程的静电磁系统进行了一般分析,并证明了不直观的结果。也就是说,如果仅使用磁场和力来控制不受约束的磁性对象,则3-DOF力控制需要四个磁源,而与方向无关的5-DOF力和航向控制则需要八个磁源。

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