Application of Phase Correlation Algorithm in Vehicle License Plate Character Identification

Author(s):  
Liying Lang ◽  
Xiaofang Zhang
2015 ◽  
Vol 2015 ◽  
pp. 1-8 ◽  
Author(s):  
Xiujie Qu ◽  
Haili Huo ◽  
Sitong Lian ◽  
Fei Zhao

Because of the differences of imaging time, position between sensor and target position, scaling, rotation, translation, and other transformations between the series of images will be generated by the imaging system. The conventional phase correlation algorithm has been widely applied because of its advantages of high speed, precision, and weak influence of the geometric distortion when computing these changing parameters. However, when the scaling factor and the rotation angle are too large, it is difficult to use the conventional phase correlation method for high precision registration. To solve this problem, this paper presents a novel method, which combines the speeded up robust features algorithm and the phase correlation method under the log polar. Through local region extraction and reusing a two-step iterative phase correlation algorithm, this method avoids excessive computation and the demand of characteristics of the image and effectively improves the accuracy of registration. A plurality of visible light image simulation verifies that this is a fast, accurate, and robust algorithm, even when the image has large angle rotation and large multiple scaling.


2010 ◽  
Author(s):  
Yueting Chen ◽  
Jiagu Wu ◽  
Qi Li ◽  
Zhihai Xu ◽  
Huajun Feng

2017 ◽  
pp. 111-119
Author(s):  
O.L. Dreval ◽  
◽  
А.Yu. Doroshenko ◽  
◽  

The use of the phase correlation algorithm as the basis of unmanned aerial vehicles (UAV) Optical Stabilizer on purpose to determine the displacement of the housing relative to the surface is described. Also, the possibility of application of the phase correlation algorithm extensions to increase accuracy and reduce computing costs is considered. The algorithm implementation in bot MATLAB language and C is provided. The computational complexity of the algorithm implementation in C was experimentally analyzed in the scope of embedded systems. The proposed algorithm gives not only an auxiliary possibility to stabilize the aircraft position but also to calculate absolute position of the aircraft in space.


2013 ◽  
Vol 21 (6) ◽  
pp. 1613-1620 ◽  
Author(s):  
赵吉文 ZHAO Ji-wen ◽  
黄彪 HUANG Biao ◽  
王荔枝 WANG Li-zhi ◽  
吴红标 WU Hong-biao

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