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Reconstruction-Based Fault Identification Using a Combined Index

Industrial & Engineering Chemistry Research · 2001 · Vol. 40(20) · pp. 4403–4414
Heng YueS. Joe Qin

Abstract

Process monitoring and fault diagnosis are crucial for efficient and optimal operation of a chemical plant. This paper proposes a reconstruction-based fault identification approach using a combined index for multidimensional fault reconstruction and identification. Fault detection is conducted using a new index that combines the squared prediction error (SPE) and T2. Necessary and sufficient conditions for fault detectability are derived. The combined index is used to reconstruct the fault along a given fault direction. Faults are identified by assuming that each fault in a candidate fault set is the true fault and comparing the reconstructed indices with the control limits. Fault reconstructability and identifiability on the basis of the combined index are discussed. A new method to extract fault directions from historical fault data is proposed. The dimension of the fault is determined on the basis of the fault detection indices after fault reconstruction. Several simulation examples and one practical c...

Fault Detection and Control SystemsMineral Processing and GrindingAdvanced Control Systems OptimizationIdentification (biology)Index (typography)Computer scienceFault (geology)GeologySeismology

Funding

  • National Science Foundation
  • Advanced Micro Devices
Citations
491
FWCI
11.34
field-weighted impact
References
17
Percentile
98%
vs. same field & year
Citations per year
Cited by
Review of Recent Research on Data-Based Process Monitoring
Industrial & Engineering Chemistry Research · 2013 · 940 citations
References
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