| 2025 | ICCCN | An Approximate Solution Using Graph Convolutional Network for a Load Balancing Problem in Communication Networks. | Shota Osada, Norihiko Shinomiya |
| 2025 | Tencon | Informatics Analysis of Glycosylation Pathway by Network Flow Algorithm and Machine Learning. | Taisei Matsuo, Kento Totsuka, Akira Togayachi, Norihiko Shinomiya, Kiyohiko Angata |
| 2024 | Tencon | ProfileOTMM: Automated Glycan Motif Analysis Through Pattern Recognition of Tree Structures. | Kento Totsuka, Masae Hosoda, Kiyoko F. Aoki-Kinoshita, Norihiko Shinomiya |
| 2021 | Tencon | A Method of Service Function Chain Configuration to Minimize Computing and Network Resources for VNF Failures. | Akihiko Taniguchi, Norihiko Shinomiya |
| 2019 | ITNAC | Unsplittable flow Edge Load factor Balancing in SDN using P4 Runtime. | Eiichiro Kawaguchi, Hikaru Kasuga, Norihiko Shinomiya |
| 2019 | ITNAC | A proposal of information diffusion model using information vitality. | Yuya Ota, Norihiko Shinomiya |
| 2019 | Tencon | Computing and Network Resource Minimization Problem for Service Function Chaining against Multiple VNF Failures. | Daiki Yamada, Norihiko Shinomiya |
| 2018 | SMC | Characteristic Analysis of the Edge Centrality Based on Activity Propagation in Information Networks. | Eiichi Takazawa, Kento Hamada, Norihiko Shinomiya |
| 2018 | Tencon | Network Partitioning Algorithm for Minimizing Communication Latency in SDN. | Eiichiro Kawaguchi, Norihiko Shinomiya |
| 2017 | AINA | Multi-leader Election in a Clustered Graph for Distributed Network Control. | Hideki Shindo, Hideo Kobayashi, Genya Ishigaki, Norihiko Shinomiya |
| 2017 | GLOBECOM | Cluster Leader Election Problem for Distributed Controller Placement in SDN. | Genya Ishigaki, Riti Gour, Ashkan Yousefpour, Norihiko Shinomiya, Jason P. Jue |
| 2016 | ISCC | On composing a resilient tree in a network with intermittent links based on stress centrality. | Genya Ishigaki, Norihiko Shinomiya |
| 2016 | ISCC | A matching-based strategy for AP selection in sustainable heterogeneous wireless networks. | Hideo Kobayashi, Eiichi Kameda, Norihiko Shinomiya |
| 2013 | AINA | A Failure Recovery Method Based on Cycle Structure and Its Verification by OpenFlow. | Junichi Nagano, Norihiko Shinomiya |
| 2013 | ISCAS | A node-weight equalization problem with circuit-based computations. | Yoichi Sakai, Kiyoshi Nakayama, Norihiko Shinomiya |
| 2012 | AINA | A Hetero-core Spliced Optical Fiber Sensor Network for Remote Monitoring of Agricultural Enviroment. | Lee See Goh, Takaaki Ichimiya, Kazuhiro Watanabe, Norihiko Shinomiya |
| 2011 | AINA | Network Failure Recovery with Tie-Sets. | Kiyoto Kadena, Kiyoshi Nakayama, Norihiko Shinomiya |
| 2011 | APCC | Constructing an optical fiber sensor network for natural environment remote monitoring. | Lee See Goh, Koichi Onodera, Mitsuhisa Kanetsuna, Kazuhiro Watanabe, Norihiko Shinomiya |
| 2011 | ISCC | Autonomous recovery for link failure based on tie-sets in information networks. | Kiyoshi Nakayama, Norihiko Shinomiya |
| 2010 | AINA | A Study on Sensor Multiplicity in Optical Fiber Sensor Networks. | Nobutoshi Abe, Yusuke Arai, Michiko Nishiyama, Norihiko Shinomiya, Kazuhiro Watanabe, Yoshimi Teshigawara |
| 2010 | AINA | Implementation and Evaluation of Emulator for Testing Service Programs in MANET. | Daisuke Kasamatsu, Norihiko Shinomiya |
| 2010 | AINA | An Evaluation Technique Using Network Voronoi Diagram for Balanced Optical Network Design. | Masayuki Minoura, Norihiko Shinomiya, Kazuyuki Tajima, Takuya Miyashita, Motoyoshi Sekiya |
| 2010 | ISCAS | Distributed control for link failure based on tie-sets in information networks. | Kiyoshi Nakayama, Norihiko Shinomiya, Hitoshi Watanabe |
| 2009 | AINA | Optical Fiber Sensor Network Integrating Communication and Sensing Functions Using Hetero-core Spliced Fiber Optic Sensors. | Nobutoshi Abe, Norihiko Shinomiya, Yoshimi Teshigawara |
| 2006 | ICSEA | Programmable Ad Hoc Networks. | Daiki Okada, Daisuke Kasamatsu, Norihiko Shinomiya, Tadashi Ohta |
| 1999 | ISCAS | Distributed meta-heuristic method for network optimization problems in information network. | Norihiko Shinomiya, Hitoshi Watanabe |