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Featured researches published by Nobuhiko Itoh.


IEICE Transactions on Communications | 2018

A Deadline-Aware Scheduling Scheme for Connected Car Services Using Mobile Networks with Quality Fluctuation

Nobuhiko Itoh; Motoki Morita; Takanori Iwai; Kozo Satoda; Ryogo Kubo

Traffic collision is an extremely serious issue in the world today. The World Health Organization (WHO) reported the number of road traffic deaths globally has plateaued at 1.25 million a year. In an attempt to decrease the occurrence of such traffic collisions, various driving systems for detecting pedestrians and vehicles have been proposed, but they are inadequate as they cannot detect vehicles and pedestrians in blind places such as sharp bends and blind intersections. Therefore, mobile networks such as long term evolution (LTE), LTE-Advanced, and 5G networks are attracting a great deal of attention as platforms for connected car services. Such platforms enable individual devices such as vehicles, drones, and sensors to exchange real-time information (e.g., location information) with each other. To guarantee effective connected car services, it is important to deliver a data block within a certain maximum tolerable delay (called a deadline in this work). The Third Generation Partnership Project (3GPP) stipulates that this deadline be 100 ms and that the arrival ratio within the deadline be 0.95. We investigated an intersection at which vehicle collisions often occur to evaluate a realistic environment and found that schedulers such as proportional fairness (PF) and payload-size and deadline-aware (PayDA) cannot satisfy the deadline and arrival ratio within the deadline, especially as network loads increase. They fail because they do not consider three key elements— radio quality, chunk size, and the deadline—when radio resources are allocated. In this paper, we propose a deadline-aware scheduling scheme that considers chunk size and the deadline in addition to radio quality and uses them to prioritize users in order to meet the deadline. The results of a simulation on ns-3 showed that the proposed method can achieve approximately four times the number of vehicles satisfying network requirements compared to PayDA. key words: IoT, resource control, 5G, LTE, connected car, V2X


Archive | 2011

Communication path control system, path control device, communication path control method, and path control program

Nobuhiko Itoh


Archive | 2012

Communication apparatus, control apparatus, communication system, communication control method, communication terminal and program

Ippei Akiyoshi; Yasuhiro Mizukishi; Nobuhiko Itoh


Archive | 2012

Mobile communication terminal, communication method, communication system, and control apparatus

Ippei Akiyoshi; Yasuhiro Mizukoshi; Nobuhiko Itoh


Archive | 2013

Communication method, communication system, information processing apparatus, communication terminal, and program

Nobuhiko Itoh


Archive | 2012

WIRELESS COMMUNICATION TERMINAL, COMMUNICATION SYSTEM, CONTROL APPARATUS, COMMUNICATION METHOD AND PROGRAM

Ippei Akiyoshi; Yasuhiro Mizukoshi; Nobuhiko Itoh


Archive | 2013

Communication apparatus, communication method, communication system, control apparatus and program

Nobuhiko Itoh; Ippei Akiyoshi; Yasuhiro Mizukoshi


Archive | 2011

Loop detecting device, system, method and program

Nobuhiko Itoh; Yasuhiro Yamasaki


Archive | 2012

Communication Apparatus, Communication System, Communication Control Method, and Computer Program

Ippei Akiyoshi; Yasuhiro Mizukoshi; Nobuhiko Itoh


Archive | 2012

Communication terminal, communication method, communication system, and program

Ippei Akiyoshi; Yasuhiro Mizukoshi; Nobuhiko Itoh

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