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Design, analysis and implementation of a spatial-temporal, adaptive and multi-replication data centric storage framework for wireless sensor and actor networks

机译:为无线传感器和演员网络设计,分析和实现时空,自适应和多复制数据中心存储框架

摘要

This PhD Thesis presents a novel framework for Data-Centric Storage(DCS) in a Wireless Sensor and Actor Network(WSAN) that enables the use of a multiple set of data replication nodes, which also change over the time. This allows reducing the average network traffic and energy consumption by adapting the number of replicas to applications’ traffic, while balancing energy burdens by varying their location. To that end we propose and validate a simple model to determine the optimal number of replicas, in terms of minimizing average traffic/energy consumption, from the measured applications’ production and consumption traffic. Simple mechanisms are proposed to decide when the current set of replication nodes should be changed, to enable new applications and sensor nodes to efficiently bootstrap into a working sensor network, to recover from failing nodes, and to adapt to changing conditions. Extensive simulations demonstrate that our approach can extend a sensor network’s lifetime by at least a 60%, and up to a factor of 10x depending on the lifetime criterion being considered. Furthermore, we have implemented our framework in a real testbed with 20 motes that validates in a small scenario those results obtained via simulation for large WSANs. Finally, we present a heuristic that adapts our framework to scenarios with spatially heterogeneous consumption and/or production traffic distributions providing an effective reduction in the overall traffic, as well as reducing the number of nodes that die over the time. --------------------------------------------------------------------------------------------------------------------------------------------
机译:本博士论文提出了一种用于无线传感器和参与者网络(WSAN)中以数据为中心的存储(DCS)的新颖框架,该框架允许使用多组数据复制节点,这些节点也会随着时间而变化。这样可以通过根据应用程序的流量调整副本的数量来减少平均网络流量和能耗,同时通过更改其位置来平衡能源负担。为此,我们提出并验证了一个简单的模型,该模型可以根据所测应用程序的生产和消费流​​量确定最小的平均流量/能耗,从而确定最佳副本数。提出了一种简单的机制来决定何时应更改当前的复制节点集,以使新的应用程序和传感器节点能够有效地引导到工作的传感器网络中,从出现故障的节点中恢复,并适应变化的条件。大量的仿真表明,根据所考虑的寿命标准,我们的方法可以将传感器网络的寿命至少延长60%,并可以延长10倍。此外,我们已经在一个包含20个微粒的真实测试平台中实现了我们的框架,该框架在较小的情况下验证了通过大型WSAN仿真获得的结果。最后,我们提出一种启发式方法,使我们的框架适应具有空间异构消费和/或生产流量分布的场景,从而有效地减少了总体流量,并减少了随时间而死亡的节点数量。 -------------------------------------------------- -------------------------------------------------- ----------------------------------------

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    Cuevas Rumín Ángel;

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  • 年度 2011
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  • 原文格式 PDF
  • 正文语种 eng
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