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SAR and BER evaluation using a simulation test bench for in vivo communication at 2.4 GHz

机译:使用模拟测试台对SAR和BER进行评估,以在2.4 GHz下进行体内通信

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We present a simulation method and results that utilizes accurate electromagnetic field simulations to study the maximum allowable transmitted power levels from in vivo devices to achieve a required bit error rates (BER) at the external node (receiver) while maintaining the specific absorption rate (SAR) under a required threshold. The BER of the communication can be calculated using the derived power threshold for a given modulation scheme. These results can be used to optimize the transmitted power levels while assuring that the safety guidelines in terms of the resulting SAR of transmitters placed in any location inside the human body are met. To evaluate the SAR and BER, a software-based test bench that allows an easy way to implement field solver solutions directly into system simulations was developed. To demonstrate the software-based test bench design, a complete OFDM-based communication (IEEE 802.11g) for the in vivo environment was simulated. Results showed that for cases when noise levels increase or the BER becomes more stringent, a relay network or the use of multiple receive antennas, such as in a MIMO system, will be become necessary to achieve high data rate communication.
机译:我们提出一种仿真方法和结果,利用精确的电磁场仿真研究体内设备的最大允许发射功率水平,以在保持特定吸收率(SAR)的同时,在外部节点(接收器)上达到所需的误码率(BER) )低于要求的阈值。对于给定的调制方案,可以使用导出的功率阈值来计算通信的BER。这些结果可用于优化发射功率水平,同时确保符合放置在人体任何位置的发射器SAR的安全准则。为了评估SAR和BER,开发了基于软件的测试平台,该平台提供了一种简单的方法来将场求解器解决方案直接实现到系统仿真中。为了演示基于软件的测试平台设计,针对体内环境模拟了完整的基于OFDM的通信(IEEE 802.11g)。结果表明,对于噪声水平增加或BER变得更加严格的情况,将有必要使用中继网络或使用多个接收天线(例如在MIMO系统中)来实现高数据速率通信。

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