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Pathloss modeling for in-body optical wireless communications

机译:体内光无线通信的路径卷模型

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Optical wireless communications (OWCs) have been recognized as a candidate enabler of next generation in-body nano-scale networks and implants. The development of an accurate channel model capable of accommodating the particularities of different type of tissues is expected to boost the design of optimized communication protocols for such applications. Motivated by this, this paper focuses on presenting a general pathloss model for in-body OWCs. In particular, we use experimental measurements in order to extract analytical expressions for the absorption coefficients of the five main tissues’ constitutions, namely oxygenated and de-oxygenated blood, water, fat, and melanin. Building upon these expressions, we derive a general formula for the absorption coefficient evaluation of any biological tissue. To verify the validity of this formula, we compute the absorption coefficient of complex tissues and compare them against respective experimental results reported by independent research works. Interestingly, we observe that the analytical formula has high accuracy and is capable of modeling the pathloss and, therefore, the penetration depth in complex tissues.
机译:光学无线通信(OWC)被认可为下一代体内纳米级网络和植入物的候选推动者。能够开发能够容纳不同类型组织的特殊性的准确信道模型,以提高用于此类应用的优化通信协议的设计。这篇文章侧重于此,专注于向身体OWC呈现一般路径型号。特别地,我们使用实验测量来提取用于五个主要组织构成的吸收系数的分析表达,即含氧和去氧化血液,水,脂肪和黑色素。建立这些表达,我们推导出一种用于任何生物组织的吸收系数评价的通用公式。为了验证该公式的有效性,我们计算复杂组织的吸收系数,并将它们与独立研究工作报告的各自的实验结果进行比较。有趣的是,观察到分析配方具有高精度并且能够建模路径,因此复杂组织中的渗透深度。

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