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Enhancing multimedia caching algorithms for variable-bandwidth streams using adaptive and smoothing techniques

机译:使用自适应和平滑技术增强可变带宽流的多媒体缓存算法

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摘要

In this paper we present several advances for managing caching resources in multimedia streaming systems. The improvements are related to increase the performance of these resources. First, we use an analytical model to build a caching algorithm for streaming known streams. This algorithm is optimum if the bandwidth requirements are constant over time. Then, we present two different caching algorithms that improve performance when the stream bandwidth requirements are variable. The adaptive interval caching algorithm (AIC) improves performance by dynamically selecting which streams should be cached depending on the variations of the bandwidth requirements. The adaptive and smoothing interval caching algorithm (ASIC) accomplishes the same goal and also includes smoothing capabilities that keep the storage bandwidth requirements more stable. The paper also proposes some modifications to increase global performance when the streams come from several sources. The evaluation shows that AIC and ASIC algorithms perform better than classical IC algorithms when used with variable bandwidth streams.
机译:在本文中,我们介绍了在多媒体流系统中管理缓存资源的一些进展。这些改进与提高这些资源的性能有关。首先,我们使用分析模型来构建用于流式传输已知流的缓存算法。如果带宽要求随时间恒定,则此算法是最佳的。然后,我们提出了两种不同的缓存算法,当流带宽要求可变时,它们可以提高性能。自适应间隔缓存算法(AIC)通过根据带宽要求的变化动态选择应缓存的流来提高性能。自适应和平滑间隔缓存算法(ASIC)可以实现相同的目标,并且还包括可以使存储带宽要求更加稳定的平滑功能。本文还提出了一些修改,以在流来自多个来源时提高全局性能。评估显示,当与可变带宽流一起使用时,AIC和ASIC算法的性能要优于经典IC算法。

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