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Modulated Retro-Reflector Transdermal Optical Wireless Communication Systems with Wavelength Diversity over Skin-Induced Attenuation and Pointing Errors

机译:在皮肤引起的衰减和指向误差上具有波长分集的调制后反射器透皮光无线通信系统

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In this work the potential for the enhancement of the outage performance of a common transdermal optical wireless (TOW) communication link is investigated by utilizing both retro-reflective modulation and wavelength diversity techniques. In this respect, an external multi-laser transceiver emits at the same time the interrogating laser signal through different optical wavelengths towards the implanted modulated retro-reflector (MRR), which modulates and reflects the arriving optical beams back to the transceiver unit equipped with the corresponding photo detector apertures, recovering data signals originated from the in-body retro-modulator. Additionally, taking into consideration the stochastic nature of pointing errors effects along with the transdermal path loss, an outage analysis is performed for the proposed TOW architecture. Under these circumstances, by jointly estimating both skin-induced attenuation and misalignment-induced fading, novel, accurate and compact mathematical expressions are derived for the evaluation of outage probability of the total TOW system, using various wavelength diversity retro-reflective configurations. The results demonstrate the feasibility of our suggestions and that the wavelength diversity is as a very efficient method for significantly enhancing the availability of a common retro-reflective TOW link.
机译:在这项工作中,通过利用回射调制和波长分集技术,研究了提高普通透皮光无线(TOW)通信链路中断性能的潜力。在这方面,外部多激光收发器同时通过不同的光波长向植入的调制后向反射器(MRR)发射询问激光信号,该调制后反射器将到达的光束调制并反射回配备了该功能的收发器单元。相应的光检测器光圈,以恢复源自体内逆调制器的数据信号。此外,考虑到指向错误的影响以及经皮路径损耗的随机性,针对建议的TOW体系结构进行了中断分析。在这种情况下,通过联合估计皮肤引起的衰减和失准引起的衰落,可以使用各种波长分集后向反射配置,得出新颖,准确和紧凑的数学表达式,用于评估整个TOW系统的停电概率。结果证明了我们建议的可行性,并且波长分集是一种非常有效的方法,可以显着提高常见的逆向反射TOW链路的可用性。

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