Design of Data Aquistion interface circuit used in Detection Inter-turn Faultin Motorbased onMotor Current Signature Analysis (MCSA)Technique

Abstract

A commitment to condition monitoring involves the operators of plant in the conduct of a range of activities. These activities may be complicated in nature and indeed may often be performed automatically under computer control. They can, however, always be down into a relatively small number of easily identifiable functional tasks. This makes it much easier to identify the common elements of machine condition monitoring schemes .The Motor Current Signature Analysis (MCSA) is considered the most popular fault detection method now a day because it can easily detect the common machine fault such as turn to turn short circuit . The present paper discusses the fundamentals of Motor Current Signature Analysis (MCSA) plus condition monitoring of the induction motor using MCSA. A proposed interface circuit design and application will be further explain in this paper, the implemented monitoring unit circuit also illustrated, see appendix A. Artificial neural networks are extensively used for speed, torque estimation, and solid state drive control in both DC and AC machines. Two scenarios presented in this paper, first ten turns assume to be shorted, and in the second thirty turns shorted to show the difference in the amplitude of frequencies at each case. Finally artificial intelligent techniques are increasingly used for condition monitoring and fault detection of machines. This paper present. An improvement in three-phase squirrel-cage induction motor stator inter-turn fault detection and diagnosis based on a neural network approach is presented.

Authors and Affiliations

Hayder O. Alwan, Noor M. Farhan, Qais S-Al- Sabbagh

Keywords

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  • EP ID EP391403
  • DOI 10.9790/9622-0706017989.
  • Views 130
  • Downloads 0

How To Cite

Hayder O. Alwan, Noor M. Farhan, Qais S-Al- Sabbagh (2017). Design of Data Aquistion interface circuit used in Detection Inter-turn Faultin Motorbased onMotor Current Signature Analysis (MCSA)Technique. International Journal of engineering Research and Applications, 7(6), 79-89. https://europub.co.uk/articles/-A-391403