Self-Organising Impact Sensing Networks in Robust Aerospace Vehicles

Author:

Prokopenko Mikhail1,Poulton Geoff1,Price Don1

Affiliation:

1. CSIRO Information and Communication Technology Centre and CSIRO Industrial Physics, Australia

Abstract

An approach to the structural health management (SHM) of future aerospace vehicles is presented. Such systems will need to operate robustly and intelligently in very adverse environments, and be capable of self-monitoring (and ultimately, self-repair). Networks of embedded sensors, active elements, and intelligence have been selected to form a prototypical “smart skin” for the aerospace structure, and a methodology based on multi-agent networks developed for the system to implement aspects of SHM by processes of self-organisation. Problems are broken down with the aid of a “response matrix” into one of three different scenarios: critical, sub-critical, and minor damage. From these scenarios, three components are selected, these being: (a) the formation of “impact boundaries” around damage sites, (b) self-assembling “impact networks”, and (c) shape replication. A genetic algorithm exploiting phase transitions in systems dynamics has been developed to evolve localised algorithms for impact boundary formation, addressing component (a). An ant colony optimisation (ACO) algorithm, extended by way of an adaptive dead reckoning scheme (ADRS) and which incorporates a “pause” heuristic, has been developed to address (b). Both impact boundary formation and ACO-ADRS algorithms have been successfully implemented on a “concept demonstrator”, while shape replication algorithms addressing component (c) have been successfully simulated.

Publisher

IGI Global

Cited by 7 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. A soft self-repairing for FBG sensor network in SHM system based on PSO–SVR model reconstruction;Optics Communications;2015-05

2. Self-Organizing Sensing of Structures: Monitoring a Space Vehicle Thermal Protection System;Advanced Information and Knowledge Processing;2013

3. Design Versus Self-Organization;Advanced Information and Knowledge Processing;2013

4. Decentralized Multi-Agent Clustering in Scale-free Sensor Networks;Studies in Computational Intelligence;2008

5. Design vs. Self-organization;Advances in Applied Self-organizing Systems;2007-11-24

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