Textile Characterization for Wearable Antenna Application Using Transmission Line Method
نویسندگان
چکیده
This proposed work introduces the textile characterisation analysis based on effects of fabric thickness and dielectric properties using transmission line method for a wearable antenna. The return loss (S11) (S21) were analysed denim, felt Tencel in correlation with conductivity Computer Simulation Technology Rogers 5880as reference sample. By varying from 0.5 mm to 4 mm, optimum type can be identified S11and S21parameters. In simulation, sample-under-test is stripline values 10-2to 108S/m. Results are further plotted against thicknesses observe behaviour all three textiles samples. results show that Felt substrate 3 give best performance. demonstrates performance judging lowest due low tangent followed by denim.For accuracy analysis, actual calculated also presented performanceat high region conductivity. study reveals importance choosing correct suitable electrical before being implemented into antenna design good efficiency.
منابع مشابه
Body Wearable Textile Antenna- A Survey
A body wearable antenna (BWA) is a hot topic for the research. In this paper various type of antennas are presented which are already available in literature. A BWA is a textile antenna, which is flexible and comfort. Sometime it is not necessary that space available for mounting the antenna is flat, so antenna should not change its characteristics during bending conditions. Rescue workers most...
متن کاملInkjet printed flexible antenna on textile for wearable applications
We report a direct write inkjet printing technique for fabricating a flexible antenna on textile for use in smart textile applications such as wearable systems (Rienzo et al. 2006). The complete antenna was deposited entirely using inkjet printing. The inkjet printed antenna is based on a half wavelength dipole antenna offering a planar structure and acceptable size. The printable silver nanopa...
متن کاملHexagonal Shaped Body Wearable Textile Antenna on EBG Substrate Material
In this paper, a hexagonal shape wearable antenna is presented .the proposed antenna is having EBG structure embed in the inner substrate layer. The antenna resonates at 2.45 GHz. When antenna is incorporated with EBG cell structure, it shows improvement in gain by 1.9 dB and 33% bandwidth improvement. The EBG structure consists of just a 3x3 elements but reduces backward radiations considerabl...
متن کاملWearable Textile Elongation Sensor
This work shows a developed wearable elongation sensor based on an optical fiber. The presented approach to sew a fiber optic into a lycra textile enables the modulation of light amplitude in respect to textile strain. This apparatus in combination with small-size instrumentation enables the development of a wearable textile garment capable of monitoring and acquiring strain data, and send it w...
متن کاملElectrical Characterization of Textile Transmission Lines
In this paper, electrical characterization and modeling of conductive textiles are presented. A dedicated measurement setup has been developed to allow reliable connection of the textile samples with the equipment cables. Geometrical fabric structures and fabrication tolerances as well as high frequency properties up to 6 GHz for four types of textiles have been determined. Transmission lines w...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
ژورنال
عنوان ژورنال: International Journal of Integrated Engineering
سال: 2023
ISSN: ['2229-838X', '2600-7916']
DOI: https://doi.org/10.30880/ijie.2023.15.03.015