首页> 外文期刊>IEEE transactions on biomedical circuits and systems >A Smart Cage With Uniform Wireless Power Distribution in 3D for Enabling Long-Term Experiments With Freely Moving Animals
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A Smart Cage With Uniform Wireless Power Distribution in 3D for Enabling Long-Term Experiments With Freely Moving Animals

机译:具有均匀3D无线分配功能的智能笼,可对自由活动的动物进行长期实验

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摘要

This paper presents a novel experimental chamber with uniform wireless power distribution in 3D for enabling long-term biomedical experiments with small freely moving animal subjects. The implemented power transmission chamber prototype is based on arrays of parallel resonators and multicoil inductive links, to form a novel and highly efficient wireless power transmission system. The power transmitter unit includes several identical resonators enclosed in a scalable array of overlapping square coils which are connected in parallel to provide uniform power distribution along x and y. Moreover, the proposed chamber uses two arrays of primary resonators, facing each other, and connected in parallel to achieve uniform power distribution along the z axis. Each surface includes 9 overlapped coils connected in parallel and implemented into two layers of FR4 printed circuit board. The chamber features a natural power localization mechanism, which simplifies its implementation and ease its operation by avoiding the need for active detection and control mechanisms. A single power surface based on the proposed approach can provide a power transfer efficiency (PTE) of 69% and a power delivered to the load (PDL) of 120 mW, for a separation distance of 4 cm, whereas the complete chamber prototype provides a uniform PTE of 59% and a PDL of 100 mW in 3D, everywhere inside the chamber with a size of .
机译:本文介绍了一种新颖的具有3D均匀无线功率分布的实验箱,可用于对小型自由活动的动物受试者进行长期生物医学实验。已实现的动力传输室原型基于并联谐振器和多线圈感应链路的阵列,从而形成了一种新颖且高效的无线电力传输系统。功率发送器单元包括几个相同的谐振器,这些谐振器封装在可缩放的重叠方形线圈阵列中,这些方形线圈并联连接以提供沿x和y的均匀功率分布。而且,所提出的腔室使用彼此面对并并联连接的两个初级谐振器阵列,以实现沿z轴的均匀功率分布。每个表面包括9个重叠的线圈,这些线圈并联连接并实现为两层FR4印刷电路板。该腔室具有自然功率定位机制,可通过避免使用主动检测和控制机制来简化其实现并简化其操作。基于提出的方法的单个功率表面可提供69%的功率传输效率(PTE),传递给负载(PDL)的功率为120 mW,分隔距离为4 cm,而完整的腔室原型可提供均匀的PTE为59%,3D的PDL为100 mW,在腔室内到处都为。

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