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Design and performance analysis of multimedia document retrieval strategies for networked Video-on-Reservation systems

机译:网络视频预约系统多媒体文档检索策略的设计与性能分析

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Video-on-Reservation (VOR) systems serve as an attractive service providing scheme for multimedia network based services. As opposed to on-demand systems, in VOR, requests arrive in advance to their viewing times so that the network resources can be better utilized by carefully scheduling the resources. In this paper, we address the problem of optimizing the per user service cost and maximizing the number of requests that can be served by VOR systems. In order to provide a guaranteed QoS, generation of multicast trees with end-to-end delay constraints is recommended to minimize the costs. Since such an issue has been proved to be NP-complete, we propose two efficient and practically realizable heuristic algorithms, referred to as Source-Based Stream Scheduling (SBS) algorithm and Destination-Based Stream Scheduling (DBS) algorithm to solve the problem in polynomial time. Both SBS and DBS algorithms judiciously combine the concept of multicast routing and network caching, so that the copies of Multimedia Documents (MMDs) can be dynamically cached in the network. To analyze the trade-off between caching cost and transmission cost, we present a mathematical model and show that service cost can be minimized by adjusting offset time according to the network characteristics. When network resources (cache space and link bandwidth) are constraints, acceptance ratio can be improved significantly by combining video partitioning with SBS or DBS. We analyze and quantify the performance under several influencing parameters such as link availability, cache capacity and MMD availability. Our simulation results conclusively show that all the proposed algorithms can reduce the service cost, balance the network load and achieve a high acceptance ratio.
机译:预约视频(VOR)系统用作基于多媒体网络的服务的有吸引​​力的服务提供方案。与按需系统相反,在VOR中,请求提前到达其查看时间,因此可以通过仔细调度资源来更好地利用网络资源。在本文中,我们解决了优化每个用户服务成本和最大化VOR系统可以处理的请求数量的问题。为了提供有保证的QoS,建议生成具有端到端延迟约束的多播树以最小化成本。由于已证明该问题是NP完全的,因此我们提出了两种高效且可实际实现的启发式算法,分别称为基于源的流调度(SBS)算法和基于目标的流调度(DBS)算法,以解决该问题。多项式时间。 SBS和DBS算法都明智地结合了多播路由和网络缓存的概念,以便可以在网络中动态缓存多媒体文档(MMD)的副本。为了分析缓存成本和传输成本之间的权衡,我们提出了一个数学模型,并表明可以通过根据网络特性调整偏移时间来最小化服务成本。当网络资源(缓存空间和链接带宽)受到限制时,通过将视频分区与SBS或DBS结合使用,可以显着提高接受率。我们在几个影响参数下分析和量化性能,例如链路可用性,缓存容量和MMD可用性。仿真结果表明,所有提出的算法都可以降低服务成本,平衡网络负载,达到较高的接受率。

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