Daiju Nakano
Publication record assembled from the DBLP archive of ranked conferences.
Papers indexed
21
Venues
7
Active years
2006–2023
Best venue rank
A*
Where they publish
Papers
21 indexed papers, newest first.
| Year | Venue | Title | Authors |
|---|---|---|---|
| 2023 | AAAI | Foundation Model for Material Science. | Seiji Takeda, Akihiro Kishimoto, Lisa Hamada, Daiju Nakano, John R. Smith |
| 2020 | KDD | Molecular Inverse-Design Platform for Material Industries. | Seiji Takeda, Toshiyuki Hama, Hsiang-Han Hsu, Victoria A. Piunova, Dmitry Zubarev, Daniel P. Sanders, Jed W. Pitera, Makoto Kogoh, Takumi Hongo, Yenwei Cheng, Wolf Bocanett, Hideaki Nakashika, Akihiro Fujita, Yuta Tsuchiya, Katsuhiko Hino, Kentaro Yano, Shuichi Hirose, Hiroki Toda, Yasumitsu Orii, Daiju Nakano |
| 2018 | ICONIP | Delayed Feedback Reservoir Computing with VCSEL. | Jean Benoit Hroux, Naoki Kanazawa, Daiju Nakano |
| 2018 | ICONIP | Proposal of Carrier-Wave Reservoir Computing. | Akira Hirose, Gouhei Tanaka, Seiji Takeda, Toshiyuki Yamane, Hidetoshi Numata, Naoki Kanazawa, Jean Benoit Hroux, Daiju Nakano, Ryosho Nakane |
| 2018 | ICONIP | Dimensionality Reduction by Reservoir Computing and Its Application to IoT Edge Computing. | Toshiyuki Yamane, Hidetoshi Numata, Jean Benoit Hroux, Naoki Kanazawa, Seiji Takeda, Gouhei Tanaka, Ryosho Nakane, Akira Hirose, Daiju Nakano |
| 2018 | IJCNN | Optoelectronic Reservoir Computing with VCSEL. | Jean Benoit Hroux, Hidetoshi Numata, Naoki Kanazawa, Daiju Nakano |
| 2017 | ICONIP | Polymer Waveguide-Based Reservoir Computing. | Jean Benoit Hroux, Hidetoshi Numata, Daiju Nakano |
| 2017 | ICONIP | Complex-Valued Neural Networks for Wave-Based Realization of Reservoir Computing. | Akira Hirose, Seiji Takeda, Toshiyuki Yamane, Daiju Nakano, Shigeru Nakagawa, Ryosho Nakane, Gouhei Tanaka |
| 2017 | ICONIP | Waveform Classification by Memristive Reservoir Computing. | Gouhei Tanaka, Ryosho Nakane, Toshiyuki Yamane, Seiji Takeda, Daiju Nakano, Shigeru Nakagawa, Akira Hirose |
| 2017 | ICONIP | Simulation Study of Physical Reservoir Computing by Nonlinear Deterministic Time Series Analysis. | Toshiyuki Yamane, Seiji Takeda, Daiju Nakano, Gouhei Tanaka, Ryosho Nakane, Akira Hirose, Shigeru Nakagawa |
| 2016 | ICONIP | Photonic Reservoir Computing Based on Laser Dynamics with External Feedback. | Seiji Takeda, Daiju Nakano, Toshiyuki Yamane, Gouhei Tanaka, Ryosho Nakane, Akira Hirose, Shigeru Nakagawa |
| 2016 | ICONIP | Exploiting Heterogeneous Units for Reservoir Computing with Simple Architecture. | Gouhei Tanaka, Ryosho Nakane, Toshiyuki Yamane, Daiju Nakano, Seiji Takeda, Shigeru Nakagawa, Akira Hirose |
| 2016 | ICONIP | Dynamics of Reservoir Computing at the Edge of Stability. | Toshiyuki Yamane, Seiji Takeda, Daiju Nakano, Gouhei Tanaka, Ryosho Nakane, Shigeru Nakagawa, Akira Hirose |
| 2015 | ICONIP | Wave-Based Reservoir Computing by Synchronization of Coupled Oscillators. | Toshiyuki Yamane, Yasunao Katayama, Ryosho Nakane, Gouhei Tanaka, Daiju Nakano |
| 2015 | IJCNN | Regularity and randomness in modular network structures for neural associative memories. | Gouhei Tanaka, Toshiyuki Yamane, Daiju Nakano, Ryosho Nakane, Yasunao Katayama |
| 2014 | ICONIP | Hopfield-Type Associative Memory with Sparse Modular Networks. | Gouhei Tanaka, Toshiyuki Yamane, Daiju Nakano, Ryosho Nakane, Yasunao Katayama |
| 2014 | WCNC | 60-GHz single-carrier coherent detection system with robust 16-QAM signal recovery. | Daiju Nakano, Yasuteru Kohda, Kohji Takano, Nobuyuki Ohba, Toshiyuki Yamane, Yasunao Katayama |
| 2014 | UC | An Energy-Efficient Computing Approach by Filling the Connectome Gap. | Yasunao Katayama, Toshiyuki Yamane, Daiju Nakano |
| 2012 | WCNC | MIMO link design strategy for wireless data center applications. | Yasunao Katayama, Toshiyuki Yamane, Yasuteru Kohda, Kohji Takano, Daiju Nakano, Nobuyuki Ohba |
| 2011 | WCNC | Wireless data center networking with steered-beam mmWave links. | Yasunao Katayama, Kohji Takano, Yasuteru Kohda, Nobuyuki Ohba, Daiju Nakano |
| 2006 | ISIT | Multiple-Packet Recovery Technique using Partially-Overlapped Block Codes. | Yasunao Katayama, Daiju Nakano |