Bo LI, Song FENG, Jun-hong MAO. Illumination uniformity of an imaging system for on-line visual ferrograph[J]. Optics and precision engineering, 2016, 24(10): 2347-2356.
DOI:
Bo LI, Song FENG, Jun-hong MAO. Illumination uniformity of an imaging system for on-line visual ferrograph[J]. Optics and precision engineering, 2016, 24(10): 2347-2356. DOI: 10.3788/OPE.20162410.2347.
Illumination uniformity of an imaging system for on-line visual ferrograph
To evaluate quantitatively the uniformity of image illumination for an On-line Visual Ferrograph (OLVF)imaging system
a new mathematical model of image illumination was presented. The view field of an object space was represented by image space parameters and optical magnification
then it was discretized into a micro area. By taking Lambert-cosine law as reference
the image illumination model based on the aperture of entrance pupil was established
the image illumination distribution was calculated reliably and the uniformity of image illumination was evaluated successfully. On the basis of Matlab simulation analysis
the number of single Light Emission Diodes(LEDs) in the circular ring array source of the OLVF imaging system was obtained and the optimized values of focal length and optical magnification were determined. The light loss of imaging system and the illumination distribution of wear debris deposition region were analyzed and calculated under the condition of the oil cavity filled with lubricant oil. The relationship between the absorptivity of lubricant oil and the peak value of CCD image illumination was investigated. The experimental results show when the luminous intensity of LED arrays is known
the imaging plane illumination non-uniformity is more than 5.60% by simulating calculation and that is from 8% to 9% by a practical test
which satisfies the demand by indicator less than 10%. Finally
this imaging system was practically used to capture the reflected ferrograph. The results show that the characteristics of wear debris has been clearly distinguished from the reflected ferrograph
and it is favorable to the ferrograph segmentation and image extraction. It concludes that the proposed model evaluates quantitatively the uniformity of image illumination
optimizes systematical structure and improves the imaging performance of the system.
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references
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