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On Reliable Broadcast in Low Duty-Cycle Wireless Sensor Networks

机译:低占空比无线传感器网络中的可靠广播

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Broadcast is one of the most fundamental services in wireless sensor networks (WSNs). It facilitates sensor nodes to propagate messages across the whole network, serving a wide range of higher level operations and thus being critical to the overall network design. A distinct feature of WSNs is that many nodes alternate between active and dormant states, so as to conserve energy and extend the network lifetime. Unfortunately, the impact of such cycles has been largely ignored in existing broadcast implementations that adopt the common assumption of all nodes being active all over the time. In this paper, we revisit the broadcast problem with active/dormant cycles. We show strong evidence that conventional broadcast approaches will suffer from severe performance degradation, and, under low duty cycles, they could easily fail to cover the whole network in an acceptable time frame. To this end, we remodel the broadcast problem in this new context, seeking a balance between efficiency and latency with coverage guarantees. We demonstrate that this problem can be translated into a graph equivalence, and develop a centralized optimal solution. It provides a valuable benchmark for assessing diverse duty-cycle-aware broadcast strategies. We then extend it to an efficient and scalable distributed implementation, which relies on local information and operations only, with built-in loss compensation mechanisms. The performance of our solution is evaluated under diverse network configurations. The results suggest that our distributed solution is close to the lower bounds of both time and forwarding costs, and it well resists to the wireless loss with good scalability on the network size and density. In addition, it enables flexible control toward the quality of broadcast coverage.
机译:广播是无线传感器网络(WSN)中最基本的服务之一。它有助于传感器节点在整个网络上传播消息,从而服务于各种更高级别的操作,因此对于整个网络设计至关重要。 WSN的显着特征是许多节点在活动状态和休眠状态之间交替,以节省能量并延长网络寿命。不幸的是,这种循环的影响在现有的广播实现中已被大大忽略,这些实现采用了所有节点始终处于活动状态的通用假设。在本文中,我们以活动/休眠周期重新讨论广播问题。我们有力的证据表明,传统的广播方法将遭受严重的性能下降,并且在低占空比下,它们很容易无法在可接受的时间范围内覆盖整个网络。为此,我们在这种新情况下对广播问题进行了建模,力求在效率和延迟之间取得平衡,并保证覆盖范围。我们证明了这个问题可以转化为等价图,并开发出集中式的最优解。它为评估各种了解占空比的广播策略提供了宝贵的基准。然后,我们将其扩展到高效且可扩展的分布式实现,该实现仅依赖于本地信息和操作,并具有内置的损失补偿机制。我们的解决方案的性能在各种网络配置下进行了评估。结果表明,我们的分布式解决方案已接近时间和转发成本的下限,并且可以很好地抵抗无线丢失,并在网络大小和密度上具有良好的可扩展性。此外,它还可以灵活控制广播覆盖范围的质量。

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