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The Simulation Method of the Galvanic Coupling Intrabody Communication With Different Signal Transmission Paths

机译:不同信号传输路径电耦合体内通信的仿真方法

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The simulation method plays an important role in the investigation of the intrabody communication (IBC). Due to the problems of the transfer function and the corresponding parameters, only the simulation of the galvanic coupling IBC along the arm has been achieved at present. In this paper, a method for the mathematical simulation of the galvanic coupling IBC with different signal transmission paths has been introduced. First, a new transfer function of the galvanic coupling IBC was derived with the consideration of the internal resistances of the IBC devices. Second, the determination of the corresponding parameters used in the transfer function was discussed in detail. Finally, both the measurements and the simulations of the galvanic coupling IBC along the different signal transmission paths were carried out. Our investigation shows that the mathematical simulation results coincide with the measurement results over the frequency range from 100 kHz to 5 MHz, which indicates that the proposed method offers the significant advantages in the theoretical analysis and the application of the galvanic coupling IBC.
机译:仿真方法在体内通信(IBC)的研究中起着重要的作用。由于传递函数和相应参数的问题,目前仅实现了沿臂的电流耦合IBC的仿真。本文介绍了一种具有不同信号传输路径的电流耦合IBC的数学仿真方法。首先,考虑到IBC器件的内部电阻,得出了电流耦合IBC的新传递函数。其次,详细讨论了传递函数中使用的相应参数的确定。最后,进行了沿不同信号传输路径的电流耦合IBC的测量和模拟。我们的研究表明,在100 kHz至5 MHz的频率范围内,数学仿真结果与测量结果相吻合,这表明所提出的方法在电流耦合IBC的理论分析和应用中具有明显的优势。

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