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Hovering of MAV by using magnetic adhesion and winch mechanisms

机译:使用磁性粘合和绞盘机制悬停MAV

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We propose a method by which a micro air vehicle (MAV) can hover without propulsion power. In this paper, we describe the design of a magnetic adhesion mechanism and a winch mechanism for an MAV that is used to perform search operations inside buildings. An MAV equipped with these mechanisms can adhere to an iron ceiling and search for a long time from an appropriate position. We designed a magnetic adhesion mechanism with an adhesion force of over 20 N. The magnetic adhesion mechanism comprises a magnet, dual coil springs, and a switching mechanism. Using models of MAV and the adhesion mechanism, we determined the parameters of the mechanism. The magnetic adhesion mechanism can be detached easily by a force less than the magnetic adhesion force. The winch mechanism comprises a structure to retriev the adhesion mechanism, a strong, lightweight tether and a servo-motor that produces enough torque to lift the MAV by the tether. We confirmed that the MAV can hover without propulsion power by using these mechanisms.
机译:我们提出了一种方法,通过该方法可以在没有推进动力的情况下悬停一辆微型空气车辆(MAV)。在本文中,我们描述了用于在建筑物内部进行搜索操作的MAV的磁性粘合机构的设计和用于执行搜索操作的绞盘机制。配备这些机制的MAV可以粘附到铁天花板上,并从适当的位置搜索很长一段时间。我们设计了一种磁性粘合机构,其粘附力为超过20n。磁性粘合机构包括磁体,双螺旋弹簧和切换机构。使用MAV和附着机构的模型,我们确定了该机制的参数。磁性粘合机构可以通过小于磁性粘附力的力容易地分离。绞盘机构包括用于检索粘合机构的结构,强,轻质系绳和伺服电动机,其产生足够的扭矩以通过系绳提升MAV。我们确认使用这些机制,MAV可以在没有推进力的情况下悬停。

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