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On the Utilization of L-PAM Technique in Transdermal Optical Wireless Links with Stochastic Pointing Errors for ABER Performance Estimation

机译:关于在透皮光学无线链路中利用L-PAM技术的利用,随机指向误差为ABER性能估计

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Ongoing research into implantable medical devices (IMDs) and optical wireless communication (OWC) links has recently revealed the feasibility of establishing high speed transdermal optical wireless (TOW) communication links between an in-body device and an external one with a reasonable low power consumption. Still, numerous emerging biomedical applications including mainly cortical recording and neural prosthesis require an increasingly higher modulation bandwidth and need to harvest the full benefits of this optical wireless communication modality. Thus, in the present contribution the potential of the enhancement of TOW spectral efficiency is investigated by utilizing the bandwidth efficient L symbol pulse amplitude modulation (L-PAM) scheme. In more detail, by taking varying and realistic parameter values for a typical direct TOW link into account and by considering also transdermal pathloss and the stochastic nature of weak to strong pointing errors, the average bit error rate (ABER) performance metric is evaluated for various PAM configurations. In this context, novel ABER analytical expressions are derived. Corresponding results which are further validated by Monte Carlo simulations over a wide signal to noise ratio (SNR) regime demonstrate the feasibility of our suggestions.
机译:最近持续研究植入医疗设备(IMD)和光学无线通信(OWC)链路已经揭示了在体内设备和外部设备之间建立高速透明光学无线(TOW)通信链路的可行性,具有合理的低功耗。仍然,许多新兴的生物医学应用包括主要的皮质记录和神经假体,需要越来越高的调制带宽,并且需要收集该光学无线通信模式的全部益处。因此,在本贡献中,通过利用带宽高效L符号脉冲幅度调制(L-PAM)方案来研究牵引频谱效率提高的潜力。更详细地,通过对典型的直接牵引链接进行不同和现实的参数值,并考虑透皮路径和弱到强指向误差的弱者的随机性,可以评估各种误码率(aber)性能度量PAM配置。在这种情况下,推导了新的aber分析表达式。通过蒙特卡罗模拟在广泛的信噪比(SNR)方案上进一步验证的相应结果表明我们建议的可行性。

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