Title
Measurement of a Container Crane Spreader Under Bad Weather Conditions by Image Restoration
Abstract
Recently, anti-sway systems for container crane spreaders have played an important role in efficiently handling cargo at terminals. A camera-based measurement system for the anti-sway systems, which consists of two reference marks on the upper surface of the spreader and a camera mounted on the crane's trolley, has been developed. However, the quality of the reference marks in images taken in bad weather such as mist, fog, and rain is degraded, and consequently, the measurement accuracy also deteriorates. To preserve measurement accuracy in bad weather, a rapid method for image restoration is needed. We propose a method that restores the quality of reference marks in images by modeling the degradation of the light intensity. The two constants in the model are estimated from the variances and averages of the intensities in two reference mark images extracted from two images taken at different heights of the spreader. The height of the spreader, as measured by the system, is also fed back into the restoration. The measurement accuracy attained by the method under simulated bad weather conditions is compared with the accuracy achieved in normal conditions. It is found that measurement accuracy is preserved, with only small errors of up to 1.39 mm under a swaying motion. The processing time of the method is 0.83 ms on average, which does not affect the measurement period of the system.
Year
DOI
Venue
2012
10.1109/TIM.2011.2161830
Instrumentation and Measurement, IEEE Transactions
Keywords
Field
DocType
cameras,containers,cranes,feature extraction,freight handling,image restoration,measurement systems,trolleys,antisway system,bad weather condition,camera-based measurement system,cargo handling,container crane spreader measurement accuracy,crane trolley,image restoration,reference mark image extraction,Anti-sway,bad weather conditions,container crane,degradation model,image restoration,position measurement
Container crane,Mist,System of measurement,Simulation,Remote sensing,Electronic engineering,Feature extraction,Image restoration,Accuracy and precision,Mathematics
Journal
Volume
Issue
ISSN
61
1
0018-9456
Citations 
PageRank 
References 
1
0.37
16
Authors
3
Name
Order
Citations
PageRank
Hideki Kawai17313.43
Youngbok Kim211.05
Yong-Woon Choi332.15