The Reliability Model of AC-Asynchronous Drive Based on the Multilevel Prognosis System Supported by Matrices and Digraphs Methods

Author:

Hetmańczyk Mariusz Piotr1

Affiliation:

1. Silesian University of Technology

Abstract

Author of this article presents an authorship reliability model of a AC-asynchronous drive written in accordance with assumptions of the multilevel prognosis system based on matrices and digraphs methods. Described model take advantage of knowledge gathered from specialists on the basis of their experience. It is worth to stress that parameters of the reliability model of the AC-drive meet the requirements of units utilized in case of distributed drives. Each change of its application range requires a modification of internal parameters, but the functional structure remains without any variations, because presented reliability model has been based on the functional structure. An intention of the author is focused on an elaboration of a collection of reliability models [ of distributed drives components, prepared in accordance with the multilevel system of prognosis based on matrices and digraphs methods. The model has been specified to the level of the independent subsystem. This approach allows the use of this model in the analysis of complex systems, consisting of separated drive subsystems, which meet the requirements of the method. Using multilevel prediction models should be possible in all applications of electric drives, regardless of purpose functions.

Publisher

Trans Tech Publications, Ltd.

Subject

Condensed Matter Physics,General Materials Science,Atomic and Molecular Physics, and Optics

Reference11 articles.

1. J. Świder, M. Hetmańczyk, Method of indirect states monitoring of dispersed electric drives. Proceedings of the The Sixth International Conference on Condition Monitoring and Machinery Failure Prevention Technologies (2009) 1171-1179.

2. J. Świder, M. Hetmańczyk, The visualization of discrete sequential systems. Journal of Achievements in Materials and Manufacturing Engineering 34 (2009) 196-203.

3. J. Świder J., M. Hetmańczyk, Computer aided diagnosis of frequency inverter states. Problems of Working Machines 33 (2009) 57-66.

4. J. Świder, M. Hetmańczyk, Adaptation of the expert system in diagnosis of the connection of the PLC user interface system and field level. Solid State Phenomena 164 (2010) 201-206.

5. J. Świder, M. Hetmańczyk, The computer integrated system of control and diagnosis of distributed drives, Silesian Technical University Publishing, Gliwice, (2011).

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