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Adaptive transmitting coil array for optimal power transfer in deeply implanted medical devices

机译:自适应发射线圈阵列,可在深度植入的医疗设备中实现最佳功率传输

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In the design of implantable devices, providing the wireless power to the device presents one of the critical parts of the system design and RF power harvesting through inductive coupling presents a commonly used solution. The maximum power transfer in the inductive link occurs when the transmitting and receiving circular coils are aligned on the same central axes. However, when there is either angular or lateral misalignment between the coils, the maximum delivered power to the receiving coil can be significantly reduced. We propose a design of an array of coils instead of a single transmitting coil that through adaptive control of the phase of the coil feed currents optimizes the power transfer when misalignment exists. We demonstrate that the two coil transmitting antenna provides increase in the power efficiency compared to the same area single coil when both angular and lateral misalignment exist in a smart pill application.
机译:在可植入设备的设计中,向设备提供无线电力是系统设计的关键部分之一,而通过电感耦合收集RF功率则是一种常用的解决方案。当发射和接收圆形线圈在同一中心轴上对齐时,会在感应链路中发生最大功率传输。但是,当线圈之间存在角度或横向未对准时,可以显着降低到接收线圈的最大输送功率。我们提出了一种线圈阵列而不是单个发射线圈的设计,该设计通过对线圈馈电电流的相位进行自适应控制,可以在存在未对准时优化功率传输。我们证明,当智能药丸应用中同时存在角度和横向未对准时,与相同面积的单个线圈相比,两线圈发射天线可提高功率效率。

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