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Textile Materials for the Design of Wearable Antennas: A Survey

机译:用于可穿戴天线设计的纺织材料:一项调查

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In the broad context of Wireless Body Sensor Networks for healthcare and pervasive applications, the design of wearable antennas offers the possibility of ubiquitous monitoring, communication and energy harvesting and storage. Specific requirements for wearable antennas are a planar structure and flexible construction materials. Several properties of the materials influence the behaviour of the antenna. For instance, the bandwidth and the efficiency of a planar microstrip antenna are mainly determined by the permittivity and the thickness of the substrate. The use of textiles in wearable antennas requires the characterization of their properties. Specific electrical conductive textiles are available on the market and have been successfully used. Ordinary textile fabrics have been used as substrates. However, little information can be found on the electromagnetic properties of regular textiles. Therefore this paper is mainly focused on the analysis of the dielectric properties of normal fabrics. In general, textiles present a very low dielectric constant that reduces the surface wave losses and increases the impedance bandwidth of the antenna. However, textile materials are constantly exchanging water molecules with the surroundings, which affects their electromagnetic properties. In addition, textile fabrics are porous, anisotropic and compressible materials whose thickness and density might change with low pressures. Therefore it is important to know how these characteristics influence the behaviour of the antenna in order to minimize unwanted effects. This paper presents a survey of the key points for the design and development of textile antennas, from the choice of the textile materials to the framing of the antenna. An analysis of the textile materials that have been used is also presented.
机译:在用于医疗保健和普及应用的无线人体传感器网络的广泛背景下,可穿戴天线的设计提供了无处不在的监视,通信以及能量收集和存储的可能性。对可穿戴天线的特殊要求是平面结构和柔性建筑材料。材料的几种特性会影响天线的性能。例如,平面微带天线的带宽和效率主要取决于基片的介电常数和厚度。在可穿戴天线中使用纺织品需要表征其特性。特定的导电纺织品可在市场上买到并已成功使用。普通织物已经用作基材。但是,关于常规纺织品的电磁性能的信息很少。因此,本文主要侧重于普通织物的介电性能分析。通常,纺织品呈现出非常低的介电常数,可降低表面波损耗并增加天线的阻抗带宽。然而,纺织材料不断地与周围环境交换水分子,这影响了它们的电磁性能。另外,织物是多孔的,各向异性的和可压缩的材料,其厚度和密度可能随着低压而变化。因此,重要的是要知道这些特性如何影响天线的性能,以最大程度地减少不良影响。本文对纺织天线设计和开发的关键点进行了调查,从纺织材料的选择到天线的框架。还介绍了已使用的纺织材料的分析。

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