2022
DOI: 10.2528/pierm22010701
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Cb-CPW Fed SRR Loaded Ism and 5g Low Profile Antenna for on-Body Healthcare Monitor

Abstract: This paper explores a loaded conductor backed coplanar waveguide (CB-CPW) split ring resonator (SRR) fed U-slot planar antenna used for healthcare monitoring via the wireless scientific industrial medical (ISM) band and medical service band at fifth generation (5G-MSB). The antenna has been designed with bio-tissue layers, muscle layers, skin, and fat. The parameters of the designed antennas, such as miniaturization, increased gain, and enhanced bandwidth, are presented. The proposed prototype results in the t… Show more

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Cited by 3 publications
(2 citation statements)
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“…Sabban et al [26] investigated the meta material wearable antenna for health care, 5G and IoT systems.5G system is the evaluation of fast data transmission using the Split Ring Resonator (SRR) with active and passive sensors developed for wearable antenna used as health care process in medical application. Shanmuganantham et al [27] introduced the CPW-fed dual-band antenna using SRR to monitor Electrocardiogram (ECG) in medical health care. The meta-material antenna designed with human body tissues like, skin, fat and muscle to avoid the effect of radiation in a human body can be analyzed during (ECG) measurement.…”
Section: Introductionmentioning
confidence: 99%
“…Sabban et al [26] investigated the meta material wearable antenna for health care, 5G and IoT systems.5G system is the evaluation of fast data transmission using the Split Ring Resonator (SRR) with active and passive sensors developed for wearable antenna used as health care process in medical application. Shanmuganantham et al [27] introduced the CPW-fed dual-band antenna using SRR to monitor Electrocardiogram (ECG) in medical health care. The meta-material antenna designed with human body tissues like, skin, fat and muscle to avoid the effect of radiation in a human body can be analyzed during (ECG) measurement.…”
Section: Introductionmentioning
confidence: 99%
“…At present, the application of the SRR in the field of EMS fabric has been rarely reported. The existing relevant literature mainly focuses on the research of textile-based antennas [ 22 , 23 ], sensors [ 24 , 25 ], and filtering [ 26 , 27 ], which mention their SE and absorbing bandwidths and other characteristics. For example, in order to filter and control the signal propagation along the ultra-high frequency (UHF) range of e-textile, transmission lines with one or more SRRs were loaded on a felt substrate, and a conclusion was obtained that the stopband level of metamaterial electronic textiles with compact embroidery was high.…”
Section: Introductionmentioning
confidence: 99%