通过wifi -蜂窝混合网络传播视频广告

Hiroshi Hanano, Y. Murata, N. Shibata, K. Yasumoto, Minoru Ito
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引用次数: 19

摘要

在本文中,我们提出了一种通过WiFi和蜂窝网络组成的混合网络进行视频广告传播的方法,以便根据用户的语境,及时向用户投放具有首选内容的视频广告。近年来,手机视频下载/流媒体服务已经变得流行起来。在各种视频投放服务中,根据用户语境进行视频广告投放的服务有望达到较高的广告效果。但是,情境感知视频广告的传播会消耗大量的带宽,因为视频广告的大小相当大,而且不同的用户在不同的时间需要同样的广告。本文提出了一种结合WiFi和蜂窝网络的移动终端视频广告传播新方法。在该方法中,将视频广告文件分成多个片段,每个节点通过WiFi自组织通信与相邻节点交换片段,从而减少蜂窝网络的使用。为了使该方法有效地适用于大量节点,我们提出了一种移动节点在没有中央控制的情况下自主和概率地决定其行为的算法。通过仿真,我们证实,与所有节点通过蜂窝网络下载视频广告的情况相比,我们的方法减少了约93%的蜂窝网络使用量,并且在节点数量多,移动性高的情况下有效地工作。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Video ads dissemination through WiFi-cellular hybrid networks
In this paper, we propose a method for video ads dissemination through a hybrid network consisting of WiFi and cellular networks, in order to provide timely delivery of video ads with preferred content to users according to the users' contexts. In recent years, video download/streaming services for cellular phones have already become popular. Among various video delivery services, a service for disseminating video ads according to the users' contexts is expected to achieve high advertising effects. However, context-aware video ads dissemination will consume large bandwidth since the size of video ad is rather large and the same ad is required at different time from various users. We propose a new video ads dissemination method for mobile terminals which utilizes both WiFi and cellular networks. In the proposed method, a file of video ad is divided into pieces and each node exchanges the pieces with neighbor nodes using WiFi ad hoc communication so that the usage of cellular network is reduced. In order to make the method works effectively for a large number of nodes, we propose an algorithm where mobile nodes autonomously and probabilistically decide their actions without a central control. Through simulations, we confirmed that our method reduces cellular network usage by about 93% compared with a case that all nodes download video ads via cellular network, and works effectively in cases with a large number of nodes and high mobility.
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