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End-to-end Routing for Dual-Radio Sensor Networks

机译:双无线电传感器网络的端到端路由

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Dual-radio, dual-processor nodes are an emerging class of Wireless Sensor Network devices that provide both low-energy operation as well as substantially increased computational performance and communication bandwidth for applications. In such systems, the secondary radio and processor operates with sufficiently low power that it may remain always vigilant, while the main processor and primary, high-bandwidth radio remain off until triggered by the application. By exploiting the high energy efficiency of the main processor and primary radio along with proper usage, net operating energy benefits are enabled for applications. The secondary radio provides a constantly available multi-hop network, while paths in the primary network exist only when required. This paper describes a topology control mechanism for establishing an end-to-end path in a network of dual-radio nodes using the secondary radios as a control channel to selectively wake up nodes along the required end-to-end path. Using numerical models as well as testbed experimentation, we show that our proposed mechanism provides significant energy savings of more than 60percent compared to alternative approaches, and that it incurs only moderately greater application latency.
机译:双射频,双处理器节点是一类新兴同时提供低能量操作的应用以及大幅提高计算性能和通信带宽的无线传感器网络的设备。在这种系统中,从无线和处理器具有足够低的功率工作,它可以保持总是警惕,而主处理器和主,高带宽的无线电保持关闭,直到由应用程序触发。通过利用主处理器的高能效和主要无线电与正确使用以来,经营性净能源收益是为应用程序启用。次级无线电提供了一个持续可用多跳网络,而在需要时只存在在主要网络中的路径。本文描述了用于使用所述辅助无线电作为控制信道,以选择性地唤醒沿着所需的端至端路径的节点双无线电节点的网络中建立的端至端路径的拓扑控制机制。利用数值模型和试验台试验,我们表明,我们所提出的机制提供了超过60percent同类产品相比,显著节能,而且它只能招致更大的适度应用程序的延迟。

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