Fault Detection and Mitigation in Kirchhoff Networks

In this letter, we study the problem of fault detection and mitigation in networks where the measurements satisfy Kirchhoff's voltage law. First, we characterise the class of faults appearing as an additive fault vector (injected by a malicious adversary or due to equipment failures) that can b...

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Veröffentlicht in:IEEE signal processing letters 2012-11, Vol.19 (11), p.749-752
Hauptverfasser: Shames, I., Teixeira, A. M. H., Sandberg, H., Johansson, K. H.
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Sprache:eng
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Zusammenfassung:In this letter, we study the problem of fault detection and mitigation in networks where the measurements satisfy Kirchhoff's voltage law. First, we characterise the class of faults appearing as an additive fault vector (injected by a malicious adversary or due to equipment failures) that can be detected by taking into account the topology of the network. Second, we consider the problem of estimating the fault vector via tools from compressive sensing. Moreover, we comment on the applicability of the developed methods to the case where the measurements satisfy Kirchhoff's current law. The proposed methods are validated via numerical examples with application to time synchronization networks.
ISSN:1070-9908
1558-2361
1558-2361
DOI:10.1109/LSP.2012.2217328