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A Wirelessly-Powered Homecage with Segmented Copper Foils and Closed-Loop Power Control

机译:具有分段铜箔和闭环功率控制的无线供电笼式系统

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摘要

A new wireless electrophysiology data acquisition system, built around a standard homecage, is presented in this paper, which can power up and communicate with sensors and actuators/stimulators attached to or implanted in small freely behaving animal subjects, such as rodents. Key abilities of the energized homecage (EnerCage) system is enabling longitudinal experiments with minimal operator involvement or interruption, while providing test subjects with an enriched environment closer to their natural habitat, without the burden of being tethered or carrying bulky batteries. The magnetic resonant multi-coil design used in the new EnerCage-HC2 automatically localizes the transmitted electromagnetic power from a single transmitter (Tx) coil at the bottom of the cage toward the receiver coil (Rx), carried on/in the animal body, obviating the need for tracking the animal or switching the coils. In order to increase the resonators’ quality factor (Q > 166) at the desired operating frequency of 13.56 MHz, while maintaining a high self-resonance frequency (SRF > 42 MHz), they are made of wide copper foils and optimally segmented based on a set of design rules that can be adopted for experimental arenas with different shapes and dimensions. The Rx rectified voltage is regulated at a user-defined window (4.1 ± 0.3 V) by a Tx-Rx closed-loop power control (CLPC) mechanism that creates a volume inside the homecage with 42 mW of power delivered to the load (PDL), and a homogeneous power transfer efficiency (PTE) plane of 14% on average at ~7 cm height, plus stability against angular misalignments of up to 80°.
机译:本文提出了一种围绕标准笼子构建的新型无线电生理数据采集系统,该系统可以加电并与附着在或植入自由行为小的动物对象(例如啮齿动物)中的传感器和执行器/刺激器通信。通电笼式(EnerCage)系统的关键功能使纵向实验的操作员参与或干扰降至最低,同时为测试对象提供了更接近自然栖息地的丰富环境,而无需束缚或携带笨重的电池。新型EnerCage-HC2中使用的磁共振多线圈设计可自动将电磁波的能量从笼子底部的单个发射器(Tx)线圈朝向动物体内/内部的接收器线圈(Rx)进行定位,无需跟踪动物或切换线圈。为了在所需的13.56 MHz的工作频率下提高谐振器的品质因数(Q> 166),同时保持较高的自谐振频率(SRF> 42 MHz),它们由宽铜箔制成,并根据一组可用于具有不同形状和尺寸的实验场所的设计规则。通过Tx-Rx闭环功率控制(CLPC)机制在用户定义的窗口(4.1±0.3 V)上调节Rx整流电压,该机制可在家用笼中产生一定体积,并向负载提供42 mW的功率(PDL) )的均匀功率传输效率(PTE)平面在〜7 cm的高度上平均为14%,此外还具有针对高达80°的角度失准的稳定性。

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