Numerical analysis of bodyworn UHF antenna systems

W. Scanlon, N. Evans
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引用次数: 119

Abstract

Bodyworn antennas are found in a wide range of medical, military and personal communication applications, yet reliable communication from the surface of the human body still presents a range of engineering challenges. At UHF and microwave frequencies, bodyworn antennas can suffer from reduced efficiency due to electromagnetic absorption in tissue, radiation pattern fragmentation and variations in feed-point impedance. The significance and nature of these effects are system specific and depend on the operating frequency, propagation environment and physical constraints on the antenna itself. This paper describes how numerical electromagnetic modelling techniques such as FDTD (finite-difference time-domain) can be used in the design of bodyworn antennas. Examples are presented for 418 MHz, 916/spl middot/5 MHz and 2/spl middot/45 GHz, in the context of both biomedical signalling and wireless personal-area networking applications such as the Bluetooth/sup TM/ wireless technology.
车身超高频天线系统的数值分析
穿戴式天线广泛用于医疗、军事和个人通信应用,但从人体表面进行可靠的通信仍然面临一系列工程挑战。在超高频和微波频率下,由于组织中的电磁吸收、辐射模式碎片化和馈点阻抗的变化,穿戴式天线的效率可能会降低。这些影响的意义和性质是系统特有的,取决于天线本身的工作频率、传播环境和物理约束。本文介绍了如何将时域有限差分(FDTD)等数值电磁建模技术应用于体载天线的设计。在生物医学信号和无线个人区域网络应用(如蓝牙/sup TM/无线技术)的背景下,给出了418 MHz, 916/spl middot/5 MHz和2/spl middot/45 GHz的示例。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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