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Consideration of contactless power station with selective excitation to moving robot

机译:对移动机器人有选择性激励的非接触式电站的考虑

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摘要

A new method of contactless energy transmission to a moving machine is proposed. This system is useful for application with moving robots, including electric vehicles such as an electric wheelchair, an automatic guided vehicle, and so on. A moving robot was used as a model experimental system with these loads. The primary coils, an arrangement of spiral coils used with the selective excitation system, are located on the floor. A secondary spiral coil is attached to the bottom of the robot. The robot receives the magnetic flux radiating from the primary coils, which serves as the power source for the robot. In terms of electric power, in this experimental system the robot needs at least 2 W to start moving. As the robot moves, the excitation follows its movement. We have studied the characteristics of power transmission when the robot moves from one primary coil to another. This selective excitation system was found to be very effective for the overall efficiency of electric power transmission. We also examined the efficiency of the coil system used herein. Based on a comparison of the closed magnetic loop circuit and the open magnetic loop circuit, the efficiency of the former determined to be 70 [%] and that of the latter was determined to be 9 [%]. A monitoring system was constructed to ascertain which coil was excited. Based on our results, it would be possible to apply this contactless power transmission system to larger systems.
机译:提出了一种新的非接触式能量传输到移动机械的方法。该系统可用于移动机器人,包括电动车辆,如电动轮椅,自动导引车等。使用移动机器人作为具有这些负载的模型实验系统。初级线圈(一种与选择性励磁系统一起使用的螺旋形线圈的布置)位于地板上。次级螺旋线圈连接到机器人的底部。机器人接收从初级线圈辐射的磁通量,该磁通量用作机器人的电源。在电力方面,在此实验系统中,机器人需要至少2 W的功率才能开始移动。随着机器人的运动,激励跟随其运动。我们研究了机器人从一个初级线圈移动到另一个初级线圈时的动力传输特性。发现该选择性激励系统对于电力传输的整体效率非常有效。我们还检查了本文使用的线圈系统的效率。基于闭环回路和开环回路的比较,前者的效率确定为70 [%],后者的效率确定为9 [%]。构建了一个监视系统以确定哪个线圈被激励。根据我们的结果,有可能将此非接触式电力传输系统应用于更大的系统。

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