Studies Of Vision Recognition Of 3D Images
碩士 === 國立高雄第一科技大學 === 機械與自動化工程所 === 98 === Because the physical, psychological, aberration, fatigue and other factors limit the ability of the human eye recognition. The human eye for low-resolution and low signal to noise ratio of image recognition capability is more difficult. This study focuses o...
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ndltd-TW-098NKIT56890502016-04-20T04:17:31Z http://ndltd.ncl.edu.tw/handle/38672343416029898470 Studies Of Vision Recognition Of 3D Images 人眼3D影像辨識之研究 Ling-Fei Chen 陳玲妃 碩士 國立高雄第一科技大學 機械與自動化工程所 98 Because the physical, psychological, aberration, fatigue and other factors limit the ability of the human eye recognition. The human eye for low-resolution and low signal to noise ratio of image recognition capability is more difficult. This study focuses on the human eye to study two-dimensional (2D) and three-dimensional (3D) images of the degree of recognition. In addition, we discussed the display of the brightness variations, noise and other factors for the interference of recognition ability of the human eye. The experimental method is based on the of two-dimensional images and three-dimensional images to perform the human eye recognition test, then the experimental results will progress recognition ability analysis. Furthermore, we found the eye for two-dimensional images and three-dimensional images of recognizable differences. By the two-dimensional images and three-dimensional images of the experimental data, we found the human eye for three-dimensional images have clear recognition and higher than 45.8% of two-dimensional images. Therefore, in the equipment requiring high degree of recognition or to work, three-dimensional image will have a better performance than two-dimensional image. Yi-Chin Fang 方怡欽 2010 學位論文 ; thesis 76 zh-TW |
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碩士 === 國立高雄第一科技大學 === 機械與自動化工程所 === 98 === Because the physical, psychological, aberration, fatigue and other factors limit the ability of the human eye recognition. The human eye for low-resolution and low signal to noise ratio of image recognition capability is more difficult. This study focuses on the human eye to study two-dimensional (2D) and three-dimensional (3D) images of the degree of recognition. In addition, we discussed the display of the brightness variations, noise and other factors for the interference of recognition ability of the human eye. The experimental method is based on the of two-dimensional images and three-dimensional images to perform the human eye recognition test, then the experimental results will progress recognition ability analysis. Furthermore, we found the eye for two-dimensional images and three-dimensional images of recognizable differences. By the two-dimensional images and three-dimensional images of the experimental data, we found the human eye for three-dimensional images have clear recognition and higher than 45.8% of two-dimensional images. Therefore, in the equipment requiring high degree of recognition or to work, three-dimensional image will have a better performance than two-dimensional image.
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author2 |
Yi-Chin Fang |
author_facet |
Yi-Chin Fang Ling-Fei Chen 陳玲妃 |
author |
Ling-Fei Chen 陳玲妃 |
spellingShingle |
Ling-Fei Chen 陳玲妃 Studies Of Vision Recognition Of 3D Images |
author_sort |
Ling-Fei Chen |
title |
Studies Of Vision Recognition Of 3D Images |
title_short |
Studies Of Vision Recognition Of 3D Images |
title_full |
Studies Of Vision Recognition Of 3D Images |
title_fullStr |
Studies Of Vision Recognition Of 3D Images |
title_full_unstemmed |
Studies Of Vision Recognition Of 3D Images |
title_sort |
studies of vision recognition of 3d images |
publishDate |
2010 |
url |
http://ndltd.ncl.edu.tw/handle/38672343416029898470 |
work_keys_str_mv |
AT lingfeichen studiesofvisionrecognitionof3dimages AT chénlíngfēi studiesofvisionrecognitionof3dimages AT lingfeichen rényǎn3dyǐngxiàngbiànshízhīyánjiū AT chénlíngfēi rényǎn3dyǐngxiàngbiànshízhīyánjiū |
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