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Investigation of inductive coupling approach for non-contact bidirectional transfer of power and signal

机译:功率和信号非接触双向传输的电感耦合方法研究

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Powering implantable low wattage biomedical devices and sensors through non-contact means is on the rise over the past recent years. In view of that, inductive coupling is currently the most favorable means of transferring energy for powering the low wattage implanted devices. The wireless inductive link works as an energy link to power up remote devices and also acts as a communication link to retrieve and write data to the same remote device by using the same set of inductive coils. This paper proposes an op-amp based inductive coupling circuit in order to analyze the magnetic coupling of two coils which can be applicable for the activation of microwatt electronic implants. The inductive powering system is incorporated with an op-amp circuit connected with an inductive sensor constructed by a receiver (embodied by the secondary winding of transformer), a transmitter coil (represented by the primary winding of transformer) and a monitoring device. Moreover this paper also discusses on some design considerations of the inductive power link and evaluates the work mathematically using MATLAB.
机译:在过去的几年中,通过非接触方式为植入式低功率生物医学设备和传感器供电的趋势正在上升。鉴于此,电感耦合目前是传递能量以为低功率植入设备供电的最有利的手段。无线感应链路充当能量链路以为远程设备加电,并且还充当通信链路,以通过使用同一组感应线圈来检索数据并将数据写入同一远程设备。为了分析两个线圈的磁耦合,本文提出了一种基于运放的电感耦合电路,该电路可用于激活微瓦电子植入物。感应供电系统包含一个运放电路,该运放电路与一个感应传感器相连,该感应传感器由接收器(以变压器的次级绕组为代表),发射器线圈(以变压器的初级绕组为代表)和监视装置构成。此外,本文还讨论了感应功率链路的一些设计注意事项,并使用MATLAB在数学上评估了工作。

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