An intelligent sensor system with reconstruction mechanism of faulty signal

  • Jung, Young-Su (Dept. of Electronics Engr., Honam University) ;
  • Hyun, Woong-Keun (Dept. of Electronics Engr., Honam University) ;
  • Yoon, In-Mo (Depr. of Software Engr., Honam University) ;
  • Jung, Young-Kee (Dept. of Computer Engr., Honam University) ;
  • Kim, C.S. (Depr. of Software Engr., Honam University) ;
  • Kim, Nam-Ho (Depr. of Software Engr., Honam University)
  • Published : 2003.10.22

Abstract

A sensor working in outdoor may generate some faulty signal owing to dust and high temperature. This paper describes an intelligent sensor system and controller which has a reconstruction mechanism for faulty signal. The faulty signals are dievided into two types as linear distortion and non linear distortion, respectively. The linear distorted signal is due to dust, and non linear distorted signal is due to physical breakdown of sensor or high temperature. These distorted signal have been reconstructed by the proposed method based on polynomial regression method and principal component analysis approach.. The proposed method has been applied to sun tracking system working in outdoor. For a robust and precision control of sun tracker, a fuzzy controller was also proposed. The fuzzy controller controls the tracker by using the collected sensor signal. The tolerance of the position control is within 1.5 degree. To show the validity of the developed system, some experiments in the field were illustrated.

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