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Opportunistic Flooding in Low-Duty-Cycle Wireless Sensor Networks with Unreliable Links

机译:具有不可靠链接的低占空比无线传感器网络中的机会泛洪

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Flooding service has been investigated extensively in wireless networks to efficiently disseminate network-wide commands, configurations, and code binaries. However, little work has been done on low-duty-cycle wireless sensor networks in which nodes stay asleep most of the time and wake up asynchronously. In this type of network, a broadcasting packet is rarely received by multiple nodes simultaneously, a unique constraining feature that makes existing solutions unsuitable. In this paper, we introduce Opportunistic Flooding, a novel design tailored for low-duty-cycle networks with unreliable wireless links and predetermined working schedules. Starting with an energy-optimal tree structure, probabilistic forwarding decisions are made at each sender based on the delay distribution of next-hop receivers. Only opportunistically early packets are forwarded via links outside the tree to reduce the flooding delay and redundancy in transmission. We further propose a forwarder selection method to alleviate the hidden terminal problem and a link-quality-based backoff method to resolve simultaneous forwarding operations. We show by extensive simulations and test-bed implementations that Opportunistic Flooding is close to the optimal performance achievable by oracle flooding designs. Compared with Improved Traditional Flooding, our design achieves significantly shorter flooding delay while consuming only 20-60% of the transmission energy.
机译:泛洪服务已在无线网络中进行了广泛研究,以有效地传播网络范围的命令,配置和代码二进制文件。但是,在低占空比无线传感器网络上所做的工作很少,在该网络中,节点大部分时间处于睡眠状态并异步唤醒。在这种类型的网络中,广播数据包很少被多个节点同时接收,这是一种独特的限制功能,使现有解决方案不适合。在本文中,我们介绍了机会泛洪,这是针对具有不可靠无线链接和预定工作时间表的低占空比网络量身定制的新颖设计。从能量最佳的树结构开始,根据下一跳接收器的延迟分布在每个发送器处做出概率转发决策。仅机会的早期数据包通过树外的链接转发,以减少泛洪延迟和传输冗余。我们进一步提出一种转发器选择方法,以减轻隐藏终端的问题;以及一种基于链路质量的退避方法,以解决同时转发操作。我们通过广泛的仿真和测试平台实施表明,机会泛洪接近于Oracle泛洪设计可实现的最佳性能。与改进的传统洪泛相比,我们的设计可大大缩短洪泛延迟,同时仅消耗20-60%的传输能量。

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