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Minimizing the communication cost for continuous skyline maintenance

机译:最小化连续天际线维护的通信成本

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Existing work in the skyline literature focuses on optimizing the processing cost. This paper aims at minimization of the communication overhead in client-server architectures, where a server continuously maintains the skyline of dynamic objects. Our first contribution is a Filter method that avoids transmission of updates from objects that cannot influence the skyline. Specifically, each object is assigned a filter so that it needs to issue an update only if it violates its filter. Filter achieves significant savings over the naive approach of transmitting all updates. Going one step further, we introduce the concept of frequent skyline query over a sliding window(FSQW). The motivation is that snapshot skylines are not very useful in streaming environments because they keep changing over time. Instead, FSQW reports the objects that appear in the skylines of at least θ ? s of the s most recent timestamps (0 θ ≤ 1). Filter can be easily adapted to FSQW processing, however, with potentially high overhead for large and frequently updated datasets. To further reduce the communication cost, we propose a Sampling method, which returns approximate FSQW results without computing each snapshot skyline. Finally, we integrate Filter and Sampling in a Hybrid approach that combines their individual advantages.
机译:天际线文献中的现有工作侧重于优化处理成本。本文旨在最小化客户端 - 服务器架构中的通信开销,服务器连续维护动态对象的天际线。我们的第一个贡献是一种过滤方法,避免从无法影响天际线的物体传输更新。具体地,分配每个对象的滤波器,以便只有在违反其过滤器时才需要才能发出更新。过滤器通过传输所有更新的天真方法实现显着节省。进一步逐步,我们在滑动窗口(FSQW)上介绍频繁的天际线查询的概念。动机是快照地平线在流环境中不是非常有用的,因为它们随着时间的推移而不断变化。相反,FSQW报告了至少θ的天际线中出现的对象? S最近时间戳的S(0 <θ≤1)。然而,过滤器可以很容易地适应FSQW处理,并且对于大型和经常更新的数据集可能具有潜在的高开销。为了进一步降低通信成本,我们提出了一种采样方法,其返回近似FSQW结果而不计算每个快照地平线。最后,我们以混合方法集成过滤器和抽样,这些方法结合了他们的个性优势。

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