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A frequency-aware data-centric mechanism for wireless sensor networks

机译:无线传感器网络中以频率为中心的以数据为中心的机制

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摘要

Wireless sensor networks (WSNs) are characterized by their low bandwidth, limited energy, and largely distributed deployment. To reduce the flooding overhead raised by transmitting query and data information, several data-centric storage (DCS) mechanisms are proposed. However, the locations of these data-centric nodes significantly impact the power consumption and efficiency for information queries and storage capabilities, especially in a multi-sink environment. This paper proposes a novel dissemination approach, which is namely the dynamic data-centric routing and storage mechanism (DDCRS), to dynamically determine locations of data-centric nodes according to sink nodes' location and data collecting rate and automatically construct shared paths from data-centric nodes to multiple sinks. To save the power consumption, the data-centric node is changed when new sink nodes participate when the WSNs or some queries change their frequencies. The simulation results reveal that the proposed protocol outperforms existing protocols in terms of power conservation and power balancing.
机译:无线传感器网络(WSN)的特点是带宽低,能量有限以及部署范围广泛。为了减少由于传输查询和数据信息而引起的泛洪开销,提出了几种以数据为中心的存储(DCS)机制。但是,这些以数据为中心的节点的位置会显着影响信息查询和存储功能的功耗和效率,尤其是在多接收器环境中。本文提出了一种新颖的传播方法,即以数据为中心的动态路由和存储机制(DDCRS),它可以根据宿节点的位置和数据收集速率动态确定以数据为中心的节点的位置,并自动从数据中构造共享路径中心节点到多个接收器。为了节省功耗,当WSN或某些查询更改其频率时,当新的接收器节点参与时,将更改以数据为中心的节点。仿真结果表明,所提出的协议在功率节省和功率平衡方面优于现有协议。

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