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Cross Interference Free Dual Frequency Wireless Power Transfer Using Frequency Bifurcation for Dynamic Biomedical Implants

机译:交叉干扰自由双频无线电力传输,使用频率分叉进行动态生物医学植入物

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Multiple biomedical implants are used in different applications to monitor the functions of living cells. The inductive resonant coupled wireless power transfer (WPT) has been investigated extensively to increase the lifetime and reduce the battery size of implants. The concurrent WPT to multiple devices is one of the unique features of inductive resonant coupling. However, the cross-coupling among the multiple implants during the concurrent power transfer raises the issue of interference between the implants. It affects both the power and data transfer rate, which leads to malfunction of implantable sensor. This article proposes a simple and effective approach of eliminating cross interference using resonant frequency bifurcation technique. Two overcoupled resonant coil structures are investigated at the transmitter (Tx) side to concurrently power two implants that are non-stationary. In addition, a dual frequency impedance matching circuit is developed to maintain the required bifurcated frequency at the Tx section regardless of changes in coupling between implanted coil and Tx side coil. The simulation and experimental outcomes predict that the proposed technique is able to provide 29.35% of power transfer efficiency at the chosen source frequency of 6.78 MHz.
机译:在不同的应用中使用多种生物医学植入物来监测活细胞的功能。诱导谐振耦合无线电力传输(WPT)已经广泛研究以增加寿命并降低植入物的电池尺寸。向多个设备的并发是电感谐振耦合的独特特征之一。然而,在并发动力传递期间多种植入物之间的交叉耦合提出了植入物之间的干扰问题。它影响功率和数据传输速率,导致可植入传感器的故障。本文提出了一种使用谐振频率分岔技术消除交叉干扰的简单有效的方法。在发射器(Tx)侧研究了两个过耦的谐振线圈结构,以同时动力两种是非静止的植入物。另外,开发了双频阻抗匹配电路以在TX部分保持所需的分叉频率,而不管植入线圈和TX侧线圈之间的耦合变化。模拟和实验结果预测,所提出的技术能够在6.78MHz的所选源频率下提供29.35%的功率传输效率。

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