Hasegawa H | Dept. Of Electrical Engineering & Computer Science Nagoya University
スポンサーリンク
概要
- HASEGAWA Hiroshiの詳細を見る
- 同名の論文著者
- Dept. Of Electrical Engineering & Computer Science Nagoya Universityの論文著者
関連著者
-
Hasegawa H
Dept. Of Electrical Engineering & Computer Science Nagoya University
-
山田 勲
千葉大理
-
Yamada I
Tokyo Inst. Of Technol. Tokyo Jpn
-
Yamada I
Dept. Of Communications & Integrated Systems Tokyo Institute Of Technology
-
Yamada I
Himeji Inst. Of Technol. Hyogo Jpn
-
Sakaniwa Kohichi
Tokyo Inst. Of Technol. Tokyo Jpn
-
Sakaniwa Kohichi
The Dept. Of Electrical And Electronic Eng. Tokyo Institute Of Technology
-
Sakaniwa K
Dept. Of Communications & Integrated Systems Tokyo Institute Of Technology
-
山田 勲
Department Of Physics Faculty Of Science Chiba University
-
HASEGAWA Hiroshi
Dept. of Electrical Engineering & Computer Science, Nagoya University
著作論文
- An Iterative MPEG Super-Resolution with an Outer Approximation of Framewise Quantization Constraint(Image)
- Discrete Time-Frequency Projection Filtering Based on an Alias-Free Discrete Time-Frequency Analysis(Digital Signal Processing)
- A Truncated Polynomial Interpolation and Its Application to Polynomially WLS Design of IIR Filters(Digital Signal Processing)
- Discrete Time-Frequency Projection Filtering based on an Alias-Free Discrete Time-Frequency Analysis (第6回ネットワークシンポジウム講演論文集)
- A Higher Order Generalization of an Alias-Free Discrete Time-Frequency Analysis(Special Section on Digital Signal Processing)
- A Truncated polynomial interpolation theorem and Its Application to the WLS Design of IIR Filters (第5回〔東京工業大学〕ネットワークシンポジウム講演論文集)
- A higher order generalization of an alias-free discrete time-frequency analysis
- A truncated polynomial interpolation theorem and its application to the WLS design of IIR filters
- A Design of Near Perfect Reconstruction Linear-Phase QMF Banks Based on Hybrid Steepest Descent Method(Special Section on Digital Signal Processing)
- A Note on Constrained Least Squares Design of M-D FIR Filter Based on Convex Projection Techniques(Special Section on Digital Signal Processing)