Ali Shahid Muhammad, Sovuthy Cheab, Noghanian Sima, Saeidi Tale, Majeed Muhammad Faran, Hussain Amir, Masood Faisal, Khan Shariq Mahmood, Shah Syed Aziz, Abbasi Qammer H
Department of Electrical and Electronic Engineering, Universiti Teknologi, PETRONAS Bander Seri Iskandar, Tronoh 32610, Perak, Malaysia.
CommScope Ruckus Wireless, 350 W Java Dr, Sunnyvale, CA 94089, USA.
Micromachines (Basel). 2022 Mar 20;13(3):475. doi: 10.3390/mi13030475.
A button sensor antenna for on-body monitoring in wireless body area network (WBAN) systems is presented. Due to the close coupling between the sensor antenna and the human body, it is highly challenging to design sensor antenna devices. In this paper, a mechanically robust system is proposed that integrates a dual-band button antenna with a wireless sensor module designed on a printed circuit board (PCB). The system features a small footprint and has good radiation characteristics and efficiency. This was fabricated, and the measured and simulated results are in good agreement. The design offers a wide range of omnidirectional radiation patterns in free space, with a reflection coefficient (S11) of −29.30 (−30.97) dB, a maximum gain of 1.75 (5.65) dBi, and radiation efficiency of 71.91 (92.51)% in the lower and upper bands, respectively. S11 reaches −23.07 (−27.07) dB and −30.76 (−31.12) dB, respectively, with a gain of 2.09 (6.70) dBi and 2.16 (5.67) dBi, and radiation efficiency of 65.12 (81.63)% and 75.00 (85.00)%, when located on the body for the lower and upper bands, respectively. The performance is minimally affected by bending, movement, and fabrication tolerances. The specific absorption rate (SAR) values are below the regulatory limitations for the spatial average over 1 g (1.6 W/Kg) and 10 g of tissues (2.0 W/Kg). For both indoor and outdoor conditions, experimental results of the range tests confirm the coverage of up to 40 m.
本文介绍了一种用于无线体域网(WBAN)系统中人体监测的纽扣式传感器天线。由于传感器天线与人体之间存在紧密耦合,设计传感器天线装置极具挑战性。本文提出了一种机械坚固的系统,该系统将双频纽扣天线与在印刷电路板(PCB)上设计的无线传感器模块集成在一起。该系统占地面积小,具有良好的辐射特性和效率。该系统已制作完成,测量结果与模拟结果吻合良好。该设计在自由空间中提供了广泛的全向辐射方向图,在下频段和上频段的反射系数(S11)分别为-29.30(-30.97)dB,最大增益分别为1.75(5.65)dBi,辐射效率分别为71.91(92.51)%。当位于人体上时,下频段和上频段的S11分别达到-23.07(-27.07)dB和-30.76(-31.12)dB,增益分别为2.09(6.70)dBi和2.16(5.67)dBi,辐射效率分别为65.12(81.63)%和75.00(85.00)%。其性能受弯曲、移动和制造公差的影响最小。比吸收率(SAR)值低于1 g组织(1.6 W/Kg)和10 g组织(2.0 W/Kg)空间平均值的监管限制。对于室内和室外条件,距离测试的实验结果证实覆盖范围可达40 m。