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首页> 外文期刊>Networking, IEEE/ACM Transactions on > src='/images/tex/16904.gif' alt='L^{2}'> : Lazy Forwarding in Low-Duty-Cycle Wireless Sensor Network
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src='/images/tex/16904.gif' alt='L^{2}'> : Lazy Forwarding in Low-Duty-Cycle Wireless Sensor Network

机译: src =“ / images / tex / 16904.gif” alt =“ L ^ {2}”> :低占空比无线传感器网络中的延迟转发

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摘要

In order to simultaneously achieve good energy efficiency and high packet delivery performance, a multihop forwarding scheme should generally involve three design elements: media access mechanism, link estimation scheme, and routing strategy. Disregarding the low-duty-cycle nature of media access often leads to overestimation of link quality. Neglecting the bursty loss characteristic of wireless links inevitably consumes much more energy than necessary and underutilizes wireless channels. The routing strategy, if not well tailored to the above two factors, results in poor packet delivery performance. In this paper, we propose , a practical design of data forwarding in low-duty-cycle wireless sensor networks. addresses link burstiness by employing multivariate Bernoulli link model. Further incorporated with synchronized rendezvous, enables sensor nodes to work in a lazy mode, keep their radios off most of the time, and realize highly reliable forwarding by scheduling very limited packet transmissions. We implement on a real sensor network testbed. The results demonstrate that outperforms state-of-the-art approaches in terms of energy efficiency and network yield.
机译:为了同时实现良好的能源效率和较高的数据包传递性能,多跳转发方案通常应包含三个设计元素:媒体访问机制,链路估计方案和路由策略。忽视媒体访问的低占空比性质通常会导致对链路质量的高估。忽略无线链路的突发性损失特性,必然会消耗比所需更多的能量,并且无法充分利用无线信道。路由策略如果不能很好地针对上述两个因素进行调整,则会导致不良的数据包传递性能。本文提出了一种低占空比无线传感器网络中数据转发的实用设计。通过使用多元伯努利链接模型解决链接突发性。进一步与同步集合相结合,使传感器节点能够以惰性模式工作,在大多数时间保持其无线电关闭,并通过调度非常有限的数据包传输来实现高度可靠的转发。我们在真实的传感器网络测试平台上实施。结果表明,就能源效率和网络产量而言,其性能优于最新方法。

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