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Two-dimensional vision measurement approach based on local sub-plane mapping 被引量:2

Two-dimensional vision measurement approach based on local sub-plane mapping
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摘要 The existing two-dimensional vision measurement methods ignore lens distortion, require the plane to be perpendicular to the optical axis, and demand a complex operation. To address these issues, a new approach based on local sub-plane mapping is presented. The plane calibration is performed by dividing the calibration plane into sub-planes, and there exists an approximate affine invariance between each small sub-plane and the corresponding image plane. Thus, the coordinate transformation can be performed precisely, without lens distortion correction. The real comparative experiments show that the proposed approach is robust and yields a higher accuracy than the traditional methods. The existing two-dimensional vision measurement methods ignore lens distortion, require the plane to be perpendicular to the optical axis, and demand a complex operation. To address these issues, a new approach based on local sub-plane mapping is presented. The plane calibration is performed by dividing the calibration plane into sub-planes, and there exists an approximate affine invariance between each small sub-plane and the corresponding image plane. Thus, the coordinate transformation can be performed precisely, without lens distortion correction. The real comparative experiments show that the proposed approach is robust and yields a higher accuracy than the traditional methods.
出处 《Chinese Optics Letters》 SCIE EI CAS CSCD 2015年第12期45-49,共5页 中国光学快报(英文版)
基金 supported by the National Natural Science Foundation of China under Grant No.61372177
关键词 CALIBRATION Lenses Calibration Lenses
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参考文献27

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