ワイヤレスネットワーキング研究室

研究業績(2020年度)

 
【論文誌】
  1. Takuma Hamagami, Shinsuke Hara, Hiroyuki Yomo, Ryusuke Miyamoto, Yasutaka Kawamoto, Takunori Shmazaki, and Hiroyuki Okuhata, “Performance Prediction of Wireless Vital Data Collection System for Exercisers by a Network Simulator,” IEICE Transactions on Communications, Vol.E103-B, No.6, pp. 653-661, June 2020.
  2. Ryota Bingo and Hiroyuki Yomo,“Rate Adaptation for Robust Data Transmissions Utilizing Multi-AP Reception and Packet-level FEC,” IEICE Communications Express, Vol. 9, No. 12, pp. 627-631, Dec. 2020.
  3. Ryota Ikeuchi and Hiroyuki Yomo,“Suppressing Interference Between Periodic and Non-Periodic Traffic in Wireless Coexistence Scenarios,”IARIA International Journal on Advances in Networks and Services, Vol. 13, No. 3&4, pp. 60-69, Dec. 2020.
  4. Eiji Nii, Shoma Nichigami, Takamasa Kitanouma, Hiroyuki Yomo, and Yasuhisa Takizawa, “Dynamic Swarm Spatial Scaling for Mobile Sensing Cluster in a Noisy Environment,” IPSJ Journal Vol. 29, Journal of Information Processing Vol.29 (2021).
  5. Junya Shiraishi, Hiroyuki Yomo, Kabin Huang, Cedomir Stefanovic, and Petar Popovski, “Content-based Wake-up for Top-k Query in Wireless Sensor Networks,” IEEE Transactions on Green Communications and Networks, Vol. 5, No. 1, pp. 362-377, March 2021.

【国際会議】
  1. Mizuki Kajita, Yuzu Kuwahara, Takunori Shimazaki, Shinsuke Hara, Hiroyuki Yomo, and Fumie Ono, “A Trellis-Based Peak Frequency Tracking Technique for Photoplethysmographic Heart Rate Sensing During Exercise,” Proc. of ISMICT 2020, May 2020.
  2. Hiroto Maruo, Yuzu Kuwahara, Takunori Shimazaki, Shinsuke Hara, Hiroyuki Yomo, and Fumie Ono, “Peak Frequency Tracking Versus Outlier Rejection for Photoplethysmographic Heart Rate Sensing During Exercise,” Proc. of ISMICT 2020, May 2020.
  3. Takuma Hamagami, Shinsuke Hara, Yasutaka Kawamoto, Hiroyuki Yomo, Ryusuke Miyamoto, and Hiroyuki Okuhata, “Summary of Experimental Results on Accurate Wireless Sensing System for a Group of Exercisers Spread in an Outdoor Ground,” Proc. of ISMICT 2020, May 2020.
  4. Ryohei Ogawa, Hiroyuki Yomo, Takuma Hamagami, Kentaro Yanagihara, Yasutaka Kawamoto, Shinsuke Hara, and Takashi Kawabata, “Centralized/Autonomous Hybrid Channel Selection for Wireless Vital Sensor Networks,” Proc. of ISMICT 2020, May 2020.
  5. Hitoshi Kawakita, Hiroyuki Yomo, and Petar Popovski, “Energy-efficient Distributed Estimation Using Wireless Sensor with Wake-up Receivers,” Proc. of VTC2020-Spring, May 2020.
  6. Kazuki Ikeda, Yua Imai, Hiroyuki Yomo, Yoshihisa Kondo and Hiroyuki Yokoyama, “Data Transmissions From a Drone Using Multi-AP Wireless LAN: A Field Trial,” Proc. of ICCCN 2020, August 2020.
  7. Yoshihisa Kondo, Hiroyuki Yomo, and Hiroyuki Yokoyama, “A Low Latency Transmission Control for Multi-link WLAN,” Proc. of VENITS Workshop in conjunction with ICCCN 2020, August 2020.
  8. Junya Shiraishi and Hiroyuki Yomo, “Wake-up Control for Wireless Sensor Networks Collecting top-k Data with Temporal Correlation,” Proc. of VTC2020-Fall, Oct. 2020.
  9. Shinsuke Hara, Takuma Hamagami, Yasutaka Kawamoto, Hiroyuki Yomo, Ryusuke Miyamoto, and Hiroyuki Okuhata, “An Adaptive Superframe Change in a Wireless Vital Sensor Network for a Group of Outdoor Exercisers,” Proc. of VTC2020-Fall, Oct. 2020.
  10. Kazuma Yamamoto and Hiroyuki Yomo, “Cross-layered Rate Adaptation for Robust and Low-Latency Video Transmissions Using Multi-AP WLAN,” Proc. of International Conference on Emerging Technologies for Communications 2020 (ICETC 2020), Dec. 2020.
  11. Hiroyuki Yomo, Junya Shiraishi, and Hitoshi Kawakita, “Content-based Wake-up for Aggregate Query in Wireless Sensor Networks,” Proc. of International Conference on Emerging Technologies for Communications 2020 (ICETC 2020), Dec. 2020.

【口頭発表】
  1. 川北和,四方博之,“無線センサネットワークにおける省電力異常検知のためのウェイクアップ制御,”信学技報, vol. 120, no. 297, NS2020-96, pp. 48-53, 2020年12月.
  2. 白石順哉,四方博之,“ウェイクアップ受信機適用無線センサネットワークにおける順位精度を考慮した省電力top-kデータ収集法,”信学技報, vol. 120, no. 297, NS2020-97, pp. 54-59, 2020年12月.
  3. 四方博之,“Multi-APを活用した無線LANロバストデータ伝送法,”信学技報, Vol. 120, No. 204, RCS2020-107, pp. 80-85,2020年10月.
  4. 家嶋謙伍,四方博之,滝沢泰久,“未知環境におけるターゲット探索のための群移動センシングアルゴリズム,”信学技報, vol. 120, no. 315, SeMI2020-43, pp. 1-6, 2021年1月.
  5. 濱上卓磨,川本康貴,四方博之,宮本龍介,島崎拓則,丸尾博人,“リアルタイム生体情報モニタリングのための無線マルチホップネットワークシステムのフィールド実験における評価,”信学技報, vol. 120, no. 348, MICT2020-25, pp. 22-26, 2021年1月.
  6. 山本寿馬,松本拓己,四方博之,浅田拓也,市川泰史,“工場環境におけるMulti-AP活用無線LAN伝送特性評価,”信学技報, Vol. 120, No. 404, RCS2020-232, pp. 149-154,2020年3月.
  7. 池田和生,大本将平,四方博之,近藤良久,横山浩之,“マルチリンク無線LANを用いた移動体リアルタイムデータ伝送,”信学技報, vol. 120, no. 413, NS2020-169, pp. 275-280, 2021年3月.
  8. 濱上卓磨,川本康貴,四方博之,宮本龍介,島崎拓則,丸尾博人,“リアルタイム生体情報モニタリングのための無線通信プロトコル,”信学技報, vol. 120, no. 413, NS2020-140, pp. 103-108, 2021年3月.
  9. 石田達也,四方博之,“無線電力伝送型センサネットワークにおける平均AoIを抑制するセクタ構成法,”電子情報通信学会2021年総合大会 2021年3月.