Title :
MMCD: Max-throughput and min-delay cooperative downloading for Drive-thru Internet systems
Author :
Ota, Kaoru ; Mianxiong Dong ; Shan Chang ; Hongzi Zhu
Author_Institution :
Muroran Inst. of Technol., Muroran, Japan
Abstract :
Advances in low-power wireless communications and micro-electronics make a great impact on a transportation system and pervasive deployment of road-side units (RSU) is promising to provide drive-thru Internet to vehicular users anytime and anywhere. Downloading data packets from the RSU, however, is not always reliable because of high mobility of vehicles and high contention among vehicular users. Using inter-vehicle communication, cooperative downloading can maximize the amount of data packets downloaded per user request. In this paper, we focus on effective data downloading for realtime applications (e.g., video streaming, online game) where each user request is prioritized by the delivery deadline. We propose a cooperative downloading algorithm, namely MMCD, which maximizes the amount of data packets downloaded from the RSU while minimizing delivery delay of each user request. The performance of MMCD is evaluated by extensive simulations and results demonstrate that our algorithm can reduce mean delivery delay while gaining downloading throughput as high as that of a state-of-the-art method.
Keywords :
Internet; cooperative communication; vehicular ad hoc networks; video streaming; MMCD; RSU; cooperative downloading algorithm; data packet downloading; drive-thru Internet system; intervehicle communication; low-power wireless communication; max-throughput and min-delay cooperative downloading; microelectronics; reliability; road-side unit; transportation system; video streaming; Ad hoc networks; Delays; Internet; Roads; Scheduling; Throughput; Vehicles; Drive-thru Internet; cooperative downloading; vehicular networks;
Conference_Titel :
Communications (ICC), 2014 IEEE International Conference on
Conference_Location :
Sydney, NSW
DOI :
10.1109/ICC.2014.6883299