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Identification of Wire Network Topology Using Impedance Spectroscopy

Qinghai Shi, Olfa Kanoun

Abstract

A new technique is proposed to locate wire faults and identify wire network topology using impedance spectroscopy (IS). The propagation along the cables is analytical, modelled with flexible multi section cascading features utilizing frequency dependent scattering parameters. Therefore, it doesn’t have the common numerical method problems. The transmission line model has the same spectrum as the measured reflection coefficient (ρ) of wire under test (WUT) so that same practical effects such as skin and proximity effects, signal loss, dispersion and frequency dependent signal propagation can be exactly incorporated. For determination of model parameters an inverse problem should be resolved and differential evolution (DE) approach is proposed. The novel method allows locating hard (short and open circuit) and soft (frays and junctions) faults and also for characterization of defects in the branches of network. Results are presented to validate and illustrate the performance of this proposed method.

Keywords
Scattering pamrameters, Impedance Spectroscopy, global optimization technique, wire fault location, network topology
Download
IMEKO-TC4-2013-092.pdf
DOI
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IMEKO TC
TC4 - Measurement of Electrical Quantities

Event details

Event
TC4 Symposium 2013
Technical Committee
TC4
Email
joaquin.del.rio@upc.edu
Place
Barcelona, SPAIN
Time
18 July 2013 - 19 July 2013
Website
http://www.imeko2013.es/

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