Overview
ABSTRACT
Electrical cables transmit power and information to communicating systems. They are subjected to the same constraints and can also be impacted by faults (short circuit, breakage, corrosion, wear, etc.). In the event of a failure of the system, it may be advisable to check the physical state of the wire interconnection network before replacing expensive equipment. Wire diagnosis systems would undoubtedly allow for considerable savings in time and money in a large number of domains such as transportation, energy, construction, infrastructure and telecommunications.
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Read the articleAUTHOR
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Fabrice AUZANNEAU: Research engineer in embedded artificial intelligence at CEA LIST
INTRODUCTION
Modern electronic systems still rely heavily on wired networks, whether for power supply or signal transmission, and these functions require highly reliable interconnections. In the early 2000s, aging electrical cables were identified as a major risk factor for air transport. The same applies to many safety-critical systems (systems whose failure can cause injury to human beings) such as road and rail transport, nuclear power plant control and intensive care medical systems.
To improve the reliability of cable networks, or to help with their maintenance, it is necessary to know their state of health, and to be able to detect any faults. The most promising diagnostic method is reflectometry. Based on the injection of one or more probe signals into the network and analysis of the reflected signals, this method provides useful information for network management. In particular, it can be used to locate faults, so as to target maintenance and limit downtime.
It is suitable for networks with complex topology, and for continuous monitoring of the network even during operation, in order to detect intermittent faults, or to monitor the evolution of fault severity, so that repairs can be carried out at the most opportune moment.
This article presents the theoretical and practical aspects of wireline network diagnostics and summarizes the main issues involved.
Field: Reliability of cable networks
Degree of technology diffusion: Emergence | Growth | Maturity
Technologies involved: Analog and digital electronics, radio frequency, microelectronics
Applications: Transport, energy, communications, building and infrastructure
Main French players :
Competence centers: CEA LIST, Supélec LGEP, INRIA
Competitive clusters: SYSTEM@TIC
Other global players: University of Utah, WiN-MS, Livewire, Wirescan...
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KEYWORDS
defects | maintenance | electrical cables | wiring interconnection network
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Electricity networks and applications
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Wired diagnostics
Bibliography
Bibliography
Software tools
Numerical simulation software for the physics of electromagnetic wave propagation can be used to model and simulate the performance of a reflectometry method or system.
CST Microwave Studio (frequency-domain finite elements) http://www.cst.com/Content/Products/MWS/Overview.aspx
...
Websites
University of Utah http://www.ece.utah.edu/~cfurse/Center%20of%20Excellence/wiring.htm
Article "Down to the wire" by C. Furse http://spectrum.ieee.org/aerospace/aviation/down-to-the-wire
...Directory
Manufacturers – Suppliers – Distributors (non-exhaustive list)
Livewire https://www.livewireinnovation.com/
Wirescan http://www.wirescan.no/
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