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Specific absorption rate reduction based on outage probability analysis for wireless capsule endoscope with spatial receive diversity

机译:基于中断概率分析的具有空间接收分集的无线胶囊内窥镜的比吸收率降低

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This study investigates the effect of spatial receive diversity on specific absorption rate (SAR) reduction based on outage probability analysis for wireless capsule endoscope (WCE). The communication performance of WCE depends much on the transmit power, which is strictly regulated in order to satisfy a safety guideline in terms of SAR, whereas WCE requires high communication performance due to its real-time data transmission. For the purpose of SAR reduction for a WCE scenario, the authors pay attention to the expectation that applying spatial diversity reception to WCE systems can not only improve the wireless communication performance but also reduce SAR. To begin with, based on finite-difference time-domain simulations with a numerical human body model, the outage probability is calculated under this implant propagation channel and the required transmit power is derived to secure a permissible outage probability. Then, the local peak SAR is calculated under the required transmit power when the WCE moves through the digestive organs. Finally, the simulation results demonstrate that applying spatial diversity reception can significantly reduce SAR for WCE.
机译:本研究基于无线胶囊内窥镜(WCE)的中断概率分析,研究了空间接收分集对比吸收率(SAR)降低的影响。 WCE的通信性能很大程度上取决于发射功率,为了满足SAR的安全准则,对WCE进行了严格的调节,而WCE由于其实时数据传输而要求很高的通信性能。为了在WCE场景中降低SAR,作者关注以下期望:将空间分集接收应用于WCE系统不仅可以改善无线通信性能,而且可以降低SAR。首先,基于具有数字人体模型的有限差分时域仿真,在该植入物传播通道下计算中断概率,并得出所需的发射功率以确保允许的中断概率。然后,当WCE穿过消化器官时,在所需的发射功率下计算局部峰值SAR。最后,仿真结果表明,应用空间分集接收可以显着降低WCE的SAR。

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