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tuPOY: Epitomizing a New Epoch in Communications With Polymer Textiles

The paper presents a new paradigm from the perspective of pervasive on-body computing through an innovative polymerized textile, which exhibits sensing and radiation properties. A radical, first of its kind, sensor fabricated from unsaturated polymer resin textile, establishes a dynamic link connect...

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Published in:Proceedings of the IEEE 2012-11, Vol.100 (11), p.3079-3098
Main Authors: Karamchandani, S. H., Mustafa, H. D., Merchant, S. N., Desai, U. B.
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cited_by cdi_FETCH-LOGICAL-c358t-6b0f62873c700bb696c1c253baa7623d4134ea7b70a9d25fa9caf980f5ba96043
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creator Karamchandani, S. H.
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description The paper presents a new paradigm from the perspective of pervasive on-body computing through an innovative polymerized textile, which exhibits sensing and radiation properties. A radical, first of its kind, sensor fabricated from unsaturated polymer resin textile, establishes a dynamic link connecting human thermodynamics to electrical ambiance. A dynamic fabrication process of esterification and η-polymerization is developed, which is articulately arrested using an innovatively formulated retardant, yielding a permanent thermally unstable partially oriented yarn (tuPOY). A prudently established nontrivial interchange phenomenon is founded, presenting an inimitable calibration mechanism of the sensors and charting a novel relationship of exuberated energy to lattice kinetics of tuPOY. This meticulously researched conducting medium of tuPOY, fabricated from aromatic polyamides, also presents an avant-garde architecture for proliferation of electrical and thermal signals concomitantly between the sensors and its transmission circuit. A power generating unit (PGU) delineates the power mining from thermal energy dissipated from the body, presenting a new dimension in operational power dynamics. A textile composite antenna is premeditated exclusively from radiating tuPOY-based patch and substrate, an archetype reporting in published literature. The judiciously designed antenna, with tuPOY coupled as its patch, and substrate operate as shields against the radiations directed towards the body leading to a self-sustained sculpt. The back-end hardware of the test setup conceptualizes an automated physician machine (APM) presenting a standalone architecture. The artificial intelligence core of APM is modeled on weighted multiclass support vector machines (wmSVMs). The capturing of signal variations, devoid of any metallic components, presents a singular facet of research and amalgamates various interdisciplinary fields, while providing a robust architecture with minimum tradeoffs.
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source IEEE Electronic Library (IEL) Journals
subjects Antenna
Antenna measurements
Antennas
Applied sciences
Architecture
artificial intelligence
Computer architecture
Computers, microcomputers
Dynamics
Electric power generation
Electronics
Exact sciences and technology
Hardware
Information, signal and communications theory
interchange phenomenon
Kinematics
Mining
Patch antennas
pervasive communications
polymer
Radiocommunications
Retardants
Sensors
Signal and communications theory
Signal representation. Spectral analysis
Signal, noise
Studies
Telecommunications
Telecommunications and information theory
Teleprocessing networks. Isdn
textile
Textiles
thermodynamics
transesterification
Ubiquitous computing
Valuation and optimization of characteristics. Simulation
title tuPOY: Epitomizing a New Epoch in Communications With Polymer Textiles
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