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A personalized system for scalable distribution of multimedia content in multicast wireless networks

机译:用于多播无线网络中多媒体内容的可伸缩分发的个性化系统

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This paper presents a novel architecture for scalable multimedia content delivery over wireless networks. The architecture takes into account both the user preferences and context in order to provide personalized contents to each user. In this way, third-party applications filter the most appropriate contents for each client in each situation. One of the key characteristics of the proposal is the scalability, which is provided, apart from the use of filtering techniques, through the transmission in multicast networks. In this sense, content delivery is carried out by means of the FLUTE (File Delivery over Unidirectional Transport) protocol, which provides reliability in unidirectional environments through different mechanisms such as AL-FEC (Application Layer - Forward Error Correction) codes, used in this paper. Another key characteristic is the context-awareness and personalization of content delivery, which is provided by means of context information, user profiles, and adaptation. The system proposed is validated through several empirical studies. Specifically, the paper presents evaluations of two types that collect objective and subjective measures. The first evaluate the efficiency of the transmission protocol, analyzing how the use of appropriate transmission parameters reduces the download time (and thus increasing the Quality of Experience), which can be minimized by using caching techniques. On the other hand, the subjective measures present a study about the user experience after testing the application and analyze the accuracy of the filtering process/strategy. Results show that using AL-FEC mechanisms produces download times until four times lower than when no protection is used. Also, results prove that there is a code rate that minimizes the download time depending on the losses and that, in general, code rates 0.7 and 0.9 provide good download times for a wide range of losses. On the other hand, subjective measures indicate a high user satisfaction (more than 80 %) and a relevant degree of accuracy of the content adaption.
机译:本文提出了一种新颖的体系结构,用于通过无线网络传递可伸缩的多媒体内容。为了向每个用户提供个性化内容,该体系结构同时考虑了用户偏好和上下文。这样,第三方应用程序会在每种情况下为每个客户端筛选最合适的内容。该提议的关键特征之一是可伸缩性,除了使用过滤技术外,还通过多播网络中的传输来提供可伸缩性。从这个意义上讲,内容传递是通过FLUTE(单向传输上的文件传递)协议执行的,该协议通过不同的机制(例如,AL-FEC(应用层-前向纠错)代码)在单向环境中提供可靠性。纸。另一个关键特征是内容交付的上下文感知和个性化,这是通过上下文信息,用户配置文件和改编提供的。所提出的系统通过一些实证研究得到了验证。具体来说,本文介绍了两种收集客观和主观衡量指标的评估。首先评估传输协议的效率,分析使用适当的传输参数如何减少下载时间(从而增加体验质量),可以通过使用缓存技术将其最小化。另一方面,主观措施是在测试应用程序后提出有关用户体验的研究,并分析过滤过程/策略的准确性。结果表明,使用AL-FEC机制产生的下载时间比未使用保护时的下载时间减少了四倍。而且,结果证明,存在一种码率,它根据损耗将下载时间减至最少,并且总的来说,码率0.7和0.9为各种损耗提供了良好的下载时间。另一方面,主观测量表明用户满意度很高(超过80%),内容适应的准确性也相应较高。

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