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A distributed data-centric storage method for hot spot mitigation in wireless sensor networks

机译:无线传感器网络中缓解热点的分布式数据中心存储方法

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In wireless sensor networks, sensor nodes are capable of not only measuring real world phenomena, but also storing, processing, and transferring these measurements. Many techniques have been proposed for storing and retrieving data in these networks. These methods are classified into three main categories. Data-centric storage is the most important one. The name comes from the fact that data's storage location is determined according to it's event type. However, most of the methods proposed in this category use a fixed event-location mapping or don't take nodes' resources into consideration. Therefore, storage nodes may experience unbalanced resource utilization problems which results into hot spot areas. We address this problem by proposing a dynamic mapping scheme which aims to reach two goals: First, to prolong network lifetime by efficient energy consumption and second, increasing quality of service by increasing data availability. The proposed method comes in two phases: First hot spot detection phase where storage nodes' status information is gathered at sink. Applying the proposed hot spot detection mechanism, sink detects a hot spotted node and alarms the node by sending a warning message to it. The hot spotted storage node receives the warning message and triggers the second phase named hot spot mitigation. In this stage it should transfer the responsibility of storing the event to another node in its' h hop neighborhood. Two metrics are considered in selecting a new storage node: 1) minimizing the total energy consumed for storing and retrieving the event 2) distributing network load evenly. The simulation presented here evaluates the proposed method in terms of network lifetime, data availability and energy consumption. The results show that the proposed method will delay hot spot effect with acceptable overhead.
机译:在无线传感器网络中,传感器节点不仅能够测量现实世界的现象,而且能够存储,处理和传输这些测量结果。已经提出了许多用于在这些网络中存储和检索数据的技术。这些方法分为三大类。以数据为中心的存储是最重要的一种。该名称来自这样一个事实,即数据的存储位置是根据其事件类型确定的。但是,此类中提出的大多数方法都使用固定的事件位置映射,或者不考虑节点的资源。因此,存储节点可能会遇到资源利用不平衡的问题,从而导致出现热点区域。我们通过提出一种动态映射方案来解决此问题,该方案旨在实现两个目标:首先,通过有效的能耗延长网络寿命,其次,通过提高数据可用性来提高服务质量。所提出的方法分为两个阶段:第一热点检测阶段,在该阶段,存储节点的状态信息在接收器处收集。应用建议的热点检测机制,接收器检测到热点节点,并通过向其发送警告消息来警告该节点。热点存储节点接收警告消息并触发名为缓解热点的第二阶段。在这一阶段,它应该将存储事件的责任转移到其H跳邻域中的另一个节点。选择一个新的存储节点时,需要考虑两个指标:1)最小化存储和检索事件所消耗的总能量2)均匀分配网络负载。此处提供的仿真在网络寿命,数据可用性和能耗方面评估了所提出的方法。结果表明,所提出的方法将以可接受的开销延迟热点效应。

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