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The proposed method first transforms the omnidirectional image into a 3D spherical image, and then relocates the spherical nodes, which are assigned pixel ...
In this paper, we propose a method for enhancing visibility of omnidirectional images by enlarging the user specified foreground regions while compressing the ...
Abstract— Omnidirectional images with a 360-degree field of view have much smaller foreground regions compared to background regions and thus are difficult ...
Dive into the research topics of 'Foreground Enlargement of Omnidirectional Images by Spherical Trigonometry'. Together they form a unique fingerprint. Sort by ...
An-shui Yu, Kenji Hara, Kohei Inoue, Kiichi Urahama: Foreground Enlargement of Omnidirectional Images by Spherical Trigonometry. ICPR 2018: 2630-2635.
Foreground Enlargement of Omnidirectional Images by Spherical Trigonometry. ICPR 2018: 2630-2635; 2017. [j17]. view. electronic edition via DOI (open access) ...
「Foreground Enlargement of Omnidirectional Images by Spherical Trigonometry」の研究トピックを掘り下げます。これらがまとまってユニークなフィンガープリントを構成 ...
In this paper, we propose a method for enhancing the visibility of omnidirectional spherical images by enlarging the foreground and compressing the ...
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This paper proposes a full-view spherical image format which is based on the geodesic division of a sphere, in comparison with the conventional 3D array ...