School of Opto-Electronics, Beijing Institute of Technology, Beijing 100081, China.
Sensors (Basel). 2012 Oct 9;12(10):13567-82. doi: 10.3390/s121013567.
Simulation based on the finite-element (FE) method plays an important role in the investigation of intra-body communication (IBC). In this paper, a finite-element model of the whole body model used for the IBC simulation is proposed and verified, while the FE simulation of the galvanic coupling IBC with different signal transmission paths has been achieved. Firstly, a novel finite-element method for modeling the whole human body is proposed, and a FE model of the whole human body used for IBC simulation was developed. Secondly, the simulations of the galvanic coupling IBC with the different signal transmission paths were implemented. Finally, the feasibility of the proposed method was verified by using in vivo measurements within the frequency range of 10 kHz-5 MHz, whereby some important conclusions were deduced. Our results indicate that the proposed method will offer significant advantages in the investigation of the galvanic coupling intra-body communication.
基于有限元(FE)方法的仿真在体内通信(IBC)的研究中起着重要作用。本文提出并验证了一种用于 IBC 仿真的整体模型的有限元模型,同时实现了具有不同信号传输路径的电流耦合 IBC 的 FE 仿真。首先,提出了一种新的用于建模整个人体的有限元方法,并开发了用于 IBC 仿真的整体人体 FE 模型。其次,实现了不同信号传输路径的电流耦合 IBC 的仿真。最后,通过在 10 kHz-5 MHz 的频率范围内进行体内测量来验证所提出方法的可行性,得出了一些重要结论。我们的结果表明,该方法将在电流耦合体内通信的研究中具有重要优势。