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A novel Ultra Wideband (UWB) wearable textile icon-type antenna is presented for WBAN applications. It comprises of radiating patch which is hexagonal in shape and partial ground plane. The design geometry is optimized to attain wider bandwidth in the UWB frequency ranges. Square shaped notch is introduced on the ground and unique slots on radiator are also introduced. Entire slots represent the “Power”...
Antennas are important components of Wireless Capsule Endoscope (WCE) that has been explored due to its non-invasive nature compare to the traditional endoscopy. The main challenges of these antennas include data rate of the telemetry system, miniaturizing the capsule, propagating efficiency of the antenna in the vicinity of human body. In this paper, a miniature Ultra-wideband (UWB) antenna is proposed...
A flexible implantable PIFA (Planar Inverted F Antenna) antenna for biomedical applications is proposed in this study. The main notability of this design refers to its subtle dimension, flexibility and subordinate thickness that makes it perfectly suitable for implementing inside human or animal tissues. The antenna is aimed to operate in the Industrial, Scientific and Medical (ISM) band (2.4–2.4835...
In this paper, a novel extended Ultra Wide Band (UWB) wearable logo-type textile antenna for body area network applications is presented. The substrate of the proposed antenna is made of Fleece fabric with permittivity 1.17. The proposed antenna comprises of a hexagonal radiating patch and a partial ground plane. Ultra wide bandwidth is attained by optimizing the geometry, introducing a square notch...
This paper presents a novel Ultra Wide Band (UWB) wearable textile antenna for body area networks. The proposed antenna consists of a hexagonal radiating patch and a partial ground plane. The substrate of the proposed antenna is made of Dacron fabric with permittivity 3. Ultra wide bandwidth is achieved by optimizing the geometry, introducing a square notch in the partial ground plane and introducing...
A differential clock distribution network using current mode logic (CML) buffer and RCL interconnect model for low-skew is presented in this paper. We investigate attenuation and skew of the proposed clock distribution network. An efficient differential CML buffer is used as it is capable of operating with low voltage and high frequency which makes this clock distribution network more advantageous...
In recent years, non-invasive Wireless Capsule Endoscope (WCE) has been explored extensively for the diagnosis of GI tract diseases. However the application of WCE is limited due to capsule size, propagating efficiency of the antenna, reducing effects on the human body and the data rate of the telemetry system. In this paper a miniature Ultra-wideband (UWB) antenna is designed for WCE by exploiting...
In this paper a novel Ultra Wide Band textile antenna is designed which operates from 2.6–14 GHz, covering entire Ultra Wide Band frequency range of 3.1–10.6 GHz, as approved by FCC. The proposed antenna consists of a octagonal patch and a partial ground plane with a square notch. The substrate of the designed antenna is made of Dacron fabric (εr=3) while patch and ground is made of copper tape. The...
Invasive computing is a novel concept in multiprocessor architecture and programming. Invasion will become an important step towards self-organizing behavior which will be needed in the next generation of massively parallel MPSoCs with unrivaled performance and resource efficiency numbers as one of the main challenges for MPSoC apart from their programming. In this paper we introduce and model a finite...
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