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On-Body Transmission at 5.2 GHz: Simulations Using FDTD With a Time Domain Huygens' Technique

机译:5.2 GHz的人体发射:使用时域惠更斯技术的FDTD仿真

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On-body communications systems are heavily influenced by the effects of the human body and cannot be analyzed without taking these into account. This, however, leads to a large problem which is a challenge to model. In this paper a transmission scenario is modeled which includes transmit and receive cavity backed slot (CBS) antennas on the body of a male adult. The slots are backed with cavities in order to get unidirectional radiation patterns and decrease the near field body interaction of the slots. The scenario is simulated with finite difference time domain (FDTD) method in combination with a time domain Huygens' (TDH) technique in order to reduce the computational load. A cylindrical numerical phantom including 15 different tissue types is modeled to represent the upper body of a male. The predicted transmission coefficient, return loss and radiation patterns obtained using the TDH method are shown to be in agreement with the resource intensive direct FDTD approach but are obtained in approximately 30% of the time.
机译:人体通信系统受到人体影响的严重影响,如果不考虑这些因素就无法进行分析。然而,这导致了很大的问题,这是建模的挑战。在本文中,对传输场景进行了建模,该传输场景包括在成年男性的身体上的发射和接收腔背隙缝隙(CBS)天线。狭槽背有空腔,以便获得单向辐射方向图并减少狭槽的近场主体相互作用。结合时域惠更斯(TDH)技术和时域有限差分时域(FDTD)方法对方案进行了仿真,以减少计算量。对包括15种不同组织类型的圆柱体数字体模进行建模,以代表男性的上半身。使用TDH方法获得的预测透射系数,回波损耗和辐射方向图与资源密集型直接FDTD方法一致,但大约在30%的时间内获得。

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