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Featured researches published by Makoto Tadenuma.
Systems and Computers in Japan | 2001
Makoto Tadenuma; Yasuaki Kanatsugu; Yutaka Tanaka
With stereoscopic image coding, including transfer of planar image signal along with depth (disparity) data related to objects contours, and then reproduction of stereoscopic image at the receiving end, fluctuations of disparity data cause 3D distortions in the reproduced image, which are perceived as deterioration of picture quality. In this paper, such picture quality deterioration is examined in terms of influence by fluctuation parameters, objects shape, and other factors. Experimental results indicate that the detection limit for disparity fluctuation is nearly completely dictated by frequency spectrum, and the sensitivity reaches its peak around 4.5 cycles/deg. In addition, sensitivity grows with smaller objects width within viewing angle of 3 through 12 minutes; however, sensitivity curves in logarithmic plots are very similar in shape.
The Journal of The Institute of Image Information and Television Engineers | 1990
Makoto Tadenuma; Shoichi Suzuki; Ryoichi Yajima; Yutaka Tanaka
NTSC方式信号との互換性を保ちつつ, 画像の高精細度情報などの付加信号を多重する場合, 現行受像機で復調した画像には, その多重信号による画質妨害が必ず生じる.本論文では, この妨害を視覚的に低減するために, 多重用変調キャリアの位相をライン間およびフィールド間でシフトする方法 (シャフリング) を提案する.まず, 位相をシフトしたキャリアの3次元周波数配置について考察し, 視覚の時空間特性との関係から多重信号が与える輝度および色に対する視覚的な妨害の量を推定する.そして主観評価実験を行ってこれを検証し, 最適なシャフリングのパタンを選定する.最後に総合的な画質評価を行い, 心理尺度上での妨害量が, この最適なシャフリングによって50%以下に抑圧され, 絵柄によっては38%以下にもなることを示し, その有効性を実証する.
Hard Copy Output | 1989
Haruo Okuda; Shin Ohno; Makoto Tadenuma
The practical use of Hi-Vision (HDTV, High Definition Television), a new quality television system, is close at hand. It is advantageous to apply Hi-Vision technology not only for moving pictures but also for still pictures like hardcopies. As the input signal inproves in quality, hardcopy should also increase in quality. In order to reproduce beautiful pictures, the hardcopying system must have: 1) A recording method of direct density modulation to ensure good gradation and resolution. 2) A recording stylus and medium for the reproduction of the recording dots (pixels) with few reproduction errors and minimum resolution loss. 3) The ability of suitable signal processing to transform video signals to still pictures for printing and to match them with printer characters. A new system has been developed to fulfill the above requirements, having a signal processing circuit and a sublimation-dye type thermal transfer printer. After experimenting with the reproduction of pictures, we are now able to obtain hardcopies with quality close to conventional photographs.
The Journal of The Institute of Image Information and Television Engineers | 1988
Haruo Okuda; Makoto Tadenuma; Shin Ohno
CRTの通常の発光量制御法であるアナログ変調は, CRTを自己発光型光源として使う場合には, 解像度, ダイナミックレンジ, 階調などに充分な特性を与えない.本論文では, CRTを光源とするハードコピー作成用プリンタにおける駆動法の一方式を提案する.まず, 解像度が高く, 階調のガンマ特性を考慮しなくて良いためディジタル方式が有利なことを明らかにした.そして, 簡易な回路で実現できるパルス幅変調とパルス数変調について得失を比較し, 階調が完全にリニアでダイナミックレンジも必要なだけ確保できる点で後者が優れることを示した.このときの解像できる空間周波数はアナログ変調に比べて約2倍であった.プリンタとして利用可能な高速画像出力のために, パルス振幅を多値とする方式を採用し, そのときの階調の誤差について考察した.画像出力実験により特性向上と階調の滑らかさを確認した.ハイビジョン信号をプリントして高画質なハードコピーが得られた.
Archive | 1998
Hiroyuki Imaizumi; Yuichi Iwadate; Yoshikazu Katayama; Ken Minoke; Yuji Nojiri; Makoto Tadenuma; Yutaka Tanaka; 浩幸 今泉; 祐一 岩舘; 美和 片山; 豊 田中; 研 蓑毛; 眞 蓼沼; 裕司 野尻
Archive | 1990
Yoshio Takeuchi; Makoto Okui; Isao Kondo; Yasuaki Kanatsugu; Junji Kumada; Taiichiro Kurita; Kazuhiko Shibuya; Taiji Nishizawa; Yutaka Tanaka; Minoru Honda; Ryoichi Yajima; Shoichi Suzuki; Hisakazu Kato; Hiroyuki Hamazumi; Kazumasa Enami; Seiichi Gohshi; Yoshinori Izumi; Haruo Okuda; Ichiro Yuyama; Sumio Yano; Makoto Tadenuma
Archive | 1999
Hiroyuki Imaizumi; Yasuaki Kanetsugu; Yoshikazu Katayama; Makoto Tadenuma; Yutaka Tanaka; 浩幸 今泉; 美和 片山; 豊 田中; 眞 蓼沼; 保明 金次
Archive | 2000
Hiroyuki Imaizumi; Yasuaki Kanetsugu; Yoshikazu Katayama; Makoto Tadenuma; 浩幸 今泉; 美和 片山; 眞 蓼沼; 保明 金次
Archive | 1999
Yuichi Iwadate; Yasuaki Kanetsugu; Ken Minoke; Makoto Tadenuma; 祐一 岩舘; 研 蓑毛; 眞 蓼沼; 保明 金次
The Journal of The Institute of Image Information and Television Engineers | 1994
Makoto Tadenuma; Ichiro Yuyama