Search Results for author: Kosuke Sato

Found 7 papers, 1 papers with code

Multifocal Stereoscopic Projection Mapping

no code implementations8 Oct 2021 Sorashi Kimura, Daisuke Iwai, Parinya Punpongsanon, Kosuke Sato

However, the current stereoscopic PM technology only satisfies binocular cues and is not capable of providing correct focus cues, which causes a vergence--accommodation conflict (VAC).

Object

A Projector-Camera System Using Hybrid Pixels with Projection and Capturing Capabilities

no code implementations11 Jul 2021 Kenta Yamamoto, Daisuke Iwai, Kosuke Sato

We propose a novel projector-camera system (ProCams) in which each pixel has both projection and capturing capabilities.

FibAR: Embedding Optical Fibers in 3D Printed Objects for Active Markers in Dynamic Projection Mapping

no code implementations6 Feb 2020 Daiki Tone, Daisuke Iwai, Shinsaku Hiura, Kosuke Sato

This paper presents a novel active marker for dynamic projection mapping (PM) that emits a temporal blinking pattern of infrared (IR) light representing its ID.

Object

Systematic quantitative analyses reveal the folk-zoological knowledge embedded in folktales

1 code implementation9 Jul 2019 Yo Nakawake, Kosuke Sato

Our analyses suggested that first, the predator-prey relationship frequently appeared in a co-occurrent animal pair within a folktale (e. g., cat and mouse or wolf and pig), and second, the motif of 'deception', describing the antagonistic behaviour among animals, appeared relatively higher in 'wild and domestic animals' and 'wild animals' than other types.

Descriptive

Procams-Based Cybernetics

no code implementations9 Oct 2015 Kosuke Sato, Daisuke Iwai, Sei Ikeda, Noriko Takemura

Procams-based cybernetics is a unique, emerging research field, which aims at enhancing and supporting our activities by naturally connecting human and computers/machines as a cooperative integrated system via projector-camera systems (procams).

Fusing Depth from Defocus and Stereo with Coded Apertures

no code implementations CVPR 2013 Yuichi Takeda, Shinsaku Hiura, Kosuke Sato

In this paper we propose a novel depth measurement method by fusing depth from defocus (DFD) and stereo.

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