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New approaches for assessing the activities of operators of complex technical systems
Author(s) -
L.S. Kuravsky,
G.A. Yuryev,
V.I. Zlatomrezhev
Publication year - 2019
Publication title -
experimental psychology (russia)
Language(s) - English
Resource type - Journals
eISSN - 2311-7036
pISSN - 2072-7593
DOI - 10.17759/exppsy.2019120403
Subject(s) - probabilistic logic , computer science , metric (unit) , operator (biology) , grading (engineering) , artificial intelligence , machine learning , data mining , enumeration , pattern recognition (psychology) , mathematics , engineering , biochemistry , operations management , chemistry , civil engineering , repressor , transcription factor , gene , combinatorics
Presented are new approaches for supporting the outcome grading for activities of operators of complex technical systems, which are based on comparisons of current exercises with the activity database patterns in both the wavelet representation metric associated with time series of activity parameters and the likelihood metric of eigenvalue trajectories for these parameters transforms as well as on probabilistic assessments of skill class recognition using sample distribution functions of exercise distances to cluster centers in a scaling space and Bayesian likelihood estimations with the aid of probabilistic profile of staying in activity parameter ranges. These techniques have demonstrated the capabilities of recognizing sets of abnormal exercises and detection of parameters characterizing operator mistakes to reveal the causes of abnormality. The techniques in question overcome limitations of existing methods and provide advantages over manual data analysis since they greatly reduce the combinatorial enumeration of the options considered.

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