植入式天线自由空间路径损耗的解析近似值

IF 3.5 Q2 ENGINEERING, ELECTRICAL & ELECTRONIC IEEE Open Journal of Antennas and Propagation Pub Date : 2024-07-02 DOI:10.1109/OJAP.2024.3421923
Mingxiang Gao;Sujith Raman;Zvonimir Sipus;Anja K. Skrivervik
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引用次数: 0

摘要

植入式无线生物电子设备可通过与外部节点的射频无线连接实现通信和/或电力传输。这些设备在设计上面临着显著的挑战,因为主体的损耗特性会大大降低植入天线的辐射效率,紧缩无线链路预算。先前的研究已经得出了封闭形式的近似表达式,用于估算在有损主体内发生的损耗,即体内路径损耗。为了评估植入式发射器和外部接收器之间的总路径损耗,本文重点研究植入式天线从身体-空气界面到外部节点的自由空间路径损耗。这并非易事,因为除了所有天线都有的球形电磁波固有的径向传播外,植入式天线还面临着主体与空气界面的电磁散射所产生的额外损耗。通过分析建模,我们提出了估算这种自由空间路径损耗的闭式近似表达式。该近似表达式是自由空间距离、人体与空气界面曲率半径、植入天线深度和有损介质介电常数的函数。通过数值计算、模拟和测量对不同的植入天线方案进行了全面验证。这项研究有助于全面了解植入式天线的路径损耗,并为其有效设计和性能评估提供可靠的分析框架。
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Analytic Approximation of Free-Space Path Loss for Implanted Antennas
Implantable wireless bioelectronic devices enable communication and/or power transfer through RF wireless connections with external nodes. These devices encounter notable design challenges due to the lossy nature of the host body, which significantly diminishes the radiation efficiency of the implanted antenna and tightens the wireless link budget. Prior research has yielded closed-form approximate expressions for estimating losses occurring within the lossy host body, known as the in-body path loss. To assess the total path loss between the implanted transmitter and external receiver, this paper focuses on the free-space path loss of the implanted antenna, from the body-air interface to the external node. This is not trivial, as in addition to the inherent radial spreading of spherical electromagnetic waves common to all antennas, implanted antennas confront additional losses arising from electromagnetic scattering at the interface between the host body and air. Employing analytical modeling, we propose closed-form approximate expressions for estimating this free-space path loss. The approximation is formulated as a function of the free-space distance, the curvature radius of the body-air interface, the depth of the implanted antenna, and the permittivity of the lossy medium. This proposed method undergoes thorough validation through numerical calculations, simulations, and measurements for different implanted antenna scenarios. This study contributes to a comprehensive understanding of the path loss in implanted antennas and provides a reliable analytical framework for their efficient design and performance evaluation.
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来源期刊
CiteScore
6.50
自引率
12.50%
发文量
90
审稿时长
8 weeks
期刊最新文献
Front Cover Table of Contents Guest Editorial Introduction to the Special Section on Women’s Research in Antennas and Propagation Section (WRAPS) IEEE ANTENNAS AND PROPAGATION SOCIETY Electromagnetic and Thermal Co-Analysis of an Implanted Dipole Antenna
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