用于身体传感器网络和移动医疗系统的新型紧凑型超宽带可穿戴带缺口天线设计

Mohammad Monirrujjman Khan, A. Sultana
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引用次数: 3

摘要

本文介绍了一种用于身体传感器网络(BSNs)和移动医疗系统的新型超宽带(UWB)可穿戴带缺口天线的开发和研究。该天线的建模和仿真使用了一个非常友好和可靠的软件Computer Simulation Technology (CST)TM Microwave Studio。该天线是一种基于纺织品的超宽带缺口天线,因为它是印在牛仔裤的纺织品衬底上的。对该天线的回波损耗、带宽、增益、辐射效率和辐射方向图等仿真性能参数进行了论证和分析。本文的主要目的是设计一种基于纺织品的小型超宽带天线,该天线在x波段具有带陷波特性,以抑制3.1 ~ 10.6 GHz超宽带频率范围内卫星通信的下行链路频段(7.25 GHz - 7.75 GHz),从而避免干扰。仿真结果表明,该天线在7.25 ~ 7.75 GHz频率范围内具有良好的带陷波特性。天线的整体尺寸为长25毫米,宽16毫米,非常紧凑。天线印刷在1毫米牛仔裤纺织品上,介电常数为1.7。这种天线显示出很好的效果;它体积小巧,印刷在纺织材料上,并具有带缺口特性,以避免干扰。由于所有这些吸引人的特点,它将是一个很好的候选身体传感器网络的移动医疗保健系统。
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Novel and Compact Ultra Wideband Wearable Band-notch Antenna Design for Body Sensor Networks and Mobile Healthcare System
The development and study of a novel and very miniaturized ultra-wideband (UWB) wearable band-notch antenna for body sensor networks (BSNs) and mobile healthcare system have been presented in this paper. A very user-friendly and reliable software Computer Simulation Technology (CST)TM Microwave Studio was used for the modeling and simulation purpose of this antenna. The antenna is a textile-based UWB notch antenna, as it was printed on jeans’ textile substrate. The simulated performance parameters, such as return loss, bandwidth, gain, radiation efficiency and radiation patterns of this antenna are demonstrated and analyzed. The main aim of this paper was to design a textile-based compact UWB antenna with the characteristics of band notch in X-band to reject the down link band (7.25 GHz–7.75 GHz) of satellite communication in the UWB frequency ranges of 3.1 to 10.6 GHz in order to avoid interference. The simulated results show that this antenna has very well band notch characteristics in the frequency range of 7.25–7.75 GHz. The overall dimension of the antenna is 25 mm in length and 16 mm in width, which is very compact. The antenna is printed on 1 mm Jeans’ textile with the dielectric constant of 1.7. This antenna shows very good results; it has compact size and is printed on textile material, and has band notch characteristics to avoid interference. Due to all these attractive characteristics, it will be a good candidate for body sensor networks for a mobile healthcare system.
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