| 2025 | WCNC | Simple Delay and Channel-Aware Scheduling Method in Round-Trip Wireless Communication for Feedback Control. | Ryotaro Iizuka, Yasuaki Yuda, Kenichi Higuchi |
| 2024 | VTC | Highly-Efficient Low-Latency Scheduling Method in Round-Trip Communication for Feedback Control. | Ryotaro Iizuka, Takanori Hara, Yasuaki Yuda, Kenichi Higuchi |
| 2022 | VTC | Autonomous Decentralized User Association Method to Maximize Integrated System Throughput for Multi-service Coexistence. | Kazuma Matsumoto, Takanori Hara, Yasuaki Yuda, Kenichi Higuchi |
| 2022 | VTC | Repetition-Based NOMA-HARQ with Adaptive Termination for URLLC. | Go Takita, Takanori Hara, Yasuaki Yuda, Kenichi Higuchi |
| 2021 | VTC | NOMA-Based Highly-Efficient Low-Latency HARQ Method for URLLC. | Ryota Kobayashi, Yasuaki Yuda, Kenichi Higuchi |
| 2020 | VTC | NOMA-Based Inter-Base Station Cooperative Scheduling Method Among Multiple Service Channels to Maximize Integrated System Throughput. | Teruaki Shikuma, Yasuaki Yuda, Kenichi Higuchi |
| 2019 | VTC | NOMA-Based Optimal Multiplexing Method for Downlink Service Channels to Maximize Integrated System Throughput. | Teruaki Shikuma, Yasuaki Yuda, Kenichi Higuchi |
| 2018 | VTC | Channel-Dependent Dynamic Frequency Bandwidth Allocation Method Among Service Channels to Maximize Integrated System Throughput. | Tatsuki Sakai, Yasuaki Yuda, Kenichi Higuchi |
| 2017 | APCC | Investigation on optimum frequency bandwidth allocation method among service channels for system throughput maximization. | Shota Mizuno, Dairoku Muramatsu, Yasuaki Yuda, Kenichi Higuchi |
| 2013 | PIMRC | An interference coordination method based on geometric mean of user throughput for heterogeneous networks. | Shozo Okasaka, Yasuaki Yuda, Masayuki Hoshino |
| 2013 | VTC | Impact of Channel Estimation Error on LTE-Advanced Uplink Using CoMP Joint Reception in a Heterogeneous Network. | Kazuaki Takeda, Yasuaki Yuda, Masayuki Hoshino, Takashi Iwai, Atsushi Matsumoto, Akihiko Nishio |
| 2012 | VTC | Study of Leakage-Based Precoding Scheme That Supports Coordinated Multi-Point Operation for LTE. | Masayuki Hoshino, Hui Tong, Tomohumi Takata, Yasuaki Yuda, Daichi Imamura |