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A switch agent for wireless sensor nodes with dual interfaces: Implementation and evaluation

机译:具有双接口的无线传感器节点的交换代理:实现和评估

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Data generation in wireless sensor networks could be bursty as it is dictated by the presence or absence of events of interest that generate these data. While conventional sensor nodes possessed only one radio interface, next generation sensor nodes are expected to have two (possibly more) radio interfaces, each with different ranges, capacities, and power consumptions. Equipping sensor nodes with dual radios has its own benefits and can be quite useful in handling bursty traffic while at the same time satisfying the application's delivery requirements. In this paper, we propose an adaptive interface switch agent that intelligently selects the interface to be used for data transmission at a sensor node based on the data burst length or end-to-end delay while taking into consideration power consumption and throughput. The proposed work generalizes earlier works in this area to enable both the source nodes and intermediate data forwarding nodes to initiate the activation of high power radios so that they can be utilized to a higher degree for converge-cast communication. We have performed extensive simulations with sensor nodes containing both IEEE 802.15.4 and IEEE 802.11 compatible radios. Our simulation results indicate that the switch agent yields throughput, delay, and packet delivery ratio comparable to the higher bandwidth interface alone, without incurring much energy wastage.
机译:无线传感器网络中的数据生成可能是突发性的,因为它取决于生成这些数据的感兴趣事件的存在与否。尽管常规传感器节点仅具有一个无线电接口,但下一代传感器节点有望具有两个(可能更多)无线电接口,每个无线电接口具有不同的范围,容量和功耗。为传感器节点配备双无线电具有其自身的优势,并且在处理突发流量时非常有用,同时又可以满足应用程序的交付要求。在本文中,我们提出了一种自适应接口交换代理,该代理基于数据突发长度或端到端延迟,在考虑功耗和吞吐量的情况下,智能地选择要用于传感器节点数据传输的接口。拟议的工作概括了该领域的早期工作,以使源节点和中间数据转发节点都能启动高功率无线电的激活,以便可以将它们更大程度地用于融合广播通信。我们已经对包含IEEE 802.15.4和IEEE 802.11兼容无线电的传感器节点进行了广泛的仿真。我们的仿真结果表明,交换代理产生的吞吐量,延迟和数据包传递率可与单独使用更高带宽的接口相媲美,而不会造成大量能源浪费。

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