Ultra Wide Band CPW-Fed Circularly Polarized Microstrip Antenna for Wearable Applications

被引:0
作者
Saumya Das
Hashinur Islam
Tanushree Bose
Nisha Gupta
机构
[1] Sikkim Manipal Institute of Technology,ECE Department
[2] Sikkim Manipal University,ECE Department
[3] Birla Institute of Technology,undefined
来源
Wireless Personal Communications | 2019年 / 108卷
关键词
Ultra-wideband (UWB); Axial ratio (AR); Coplanar waveguide (CPW); Circular polarization (CP); On body performance; Specific absorption rate (SAR);
D O I
暂无
中图分类号
学科分类号
摘要
A conformal rigid microstrip ultra-wideband (UWB) circularly polarized wearable antenna is proposed to overcome the behavioural irregularities of flexible body-worn antennas. The design demonstrates the inclusion of two L shaped radiators along with an L shape feed and also a vertically protruded stub embedded with the ground plane for achieving the required ultra-wide bandwidth and circular polarization. Coplanar waveguide (CPW) feed is used to overcome the bandwidth limitation of circular polarization. The proposed low profile antenna with dimensions 75 × 63 × 1.52 mm3 yields a 10 dB impedance bandwidth of 111.4% (1.28–4.5 GHz) and a 3 dB axial ratio bandwidth of 45.61% (2.2–3.5 GHz). On body performance measurement of this planar antenna validates its applicability under body worn condition. Specific absorption rate (SAR) assessment has also been evaluated for this antenna on a hypothetical body model to justify its acceptance for the wearable application. It is observed that the maximum radiation amount absorbed by the body model is restricted to a maximum SAR value of 1.19 W/kg and 1.43 W/kg over 1 g and 10 g average body mass respectively. The time-domain characteristics such as group delay and waveform response, also exhibit satisfactory UWB performance of the proposed antenna. A lumped wideband equivalent circuit model of the antenna is also developed for estimating the broadband matching ability.
引用
收藏
页码:87 / 106
页数:19
相关论文
共 110 条
[1]  
Bharadwaj R(2017)Impulse radio ultra-wideband communications for localization and tracking of human body and limbs movement for healthcare applications IEEE Transactions on Antennas and Propagation 65 7298-7309
[2]  
Swaisaenyakorn S(2011)Low-power ultrawideband wireless telemetry transceiver for medical sensor applications IEEE Transactions on Biomedical Engineering 58 768-772
[3]  
Parini CG(2017)Wearable ultra wide dual band flexible textile antenna for WiMax/WLAN application Wireless Personal Communications 95 1075-1086
[4]  
Batchelor JC(2018)Multiband flexible antenna for wearable personal communications Wireless Personal Communications 100 1-12
[5]  
Alomainy A(2018)SAR calculations of novel textile dual-layer UWB lotus antenna for astronauts spacesuit Progress In Electromagnetics Research 82 135-144
[6]  
Gao Y(2017)Experimental investigations of wearable antenna on flexible perforated plastic substrate Microwave and Optical Technology Letters 59 265-270
[7]  
Zheng Y(2017)Wearable antenna integrated into military berets for indoor/outdoor positioning system IEEE Antennas and Wireless Propagation Letters 16 1919-1922
[8]  
Diao S(2017)Compact and low-profile textile EBG-based antenna for wearable medical applications IEEE Antennas and Wireless Propagation Letters 16 2550-2553
[9]  
Toh WD(2015)Dual-band EBG integrated monopole antenna deploying fractal geometry for wearable applications IEEE Antennas and Wireless Propagation Letters 14 249-252
[10]  
Ang CW(2013)Crumpling of microstrip antenna array IEEE Transactions on Antennas and Propagation 61 4567-4576