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A lightweight, self-adaptive lock gate designation scheme for data collection in long-thin wireless sensor networks

机译:一种轻巧的自适应锁门指定方案,用于长型无线传感器网络中的数据收集

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摘要

Constrained by the physical environments, the long-thin topology has recently been promoted for many practical deployments of wireless sensor networks (WSNs). In general, a long-thin topology is composed of a number of long branches of sensor nodes, where along a branch each sensor node has only one potential parent node toward the sink node. Although data aggregation may alleviate excessive packet contention, the maximum payload size of a packet and the dynamically changing traffic loads may severely affect the amount of sensor readings that may be collected along a long branch of sensor nodes. In addition, many practical applications of long-thin WSNs demand the exact sensor readings at each location along the deployment areas for monitoring and analysis purposes, so sensor readings may not be aggregated when they are collected. This paper proposes a lightweight, self-adaptive scheme that designates multiple collection nodes, termed lock gates, along a long-thin network to collect sensor readings sent from their respective upstream sensor nodes. The self-adaptive lock gate designation scheme balances between the responsiveness and the congestion of data collection while mitigating the funneling effect. The scheme also dynamically adapts the designation of lock gates to accommodate the time-varying sensor reading generation rates of different sensor nodes. A testbed of 100 Jennic sensor nodes is developed to demonstrate the effectiveness of the proposed lock gate designation scheme.
机译:受物理环境的限制,近来已为许多无线传感器网络(WSN)的实际部署提倡了超薄拓扑。通常,长而薄的拓扑结构由多个传感器节点的长分支组成,其中每个传感器节点沿着一个分支只有一个朝向汇聚节点的潜在父节点。尽管数据聚合可以缓解过多的数据包争用,但是数据包的最大有效负载大小和动态变化的流量负载可能会严重影响可以沿传感器节点的长分支收集的传感器读数的数量。此外,许多薄型WSN的实际应用都需要在部署区域的每个位置上获得准确的传感器读数,以进行监视和分析,因此,在收集传感器读数时可能不会对其进行汇总。本文提出了一种轻量级的自适应方案,该方案沿着长型网络指定多个收集节点(称为锁闸),以收集从其各自的上游传感器节点发送的传感器读数。自适应锁门指定方案可在缓解响应和数据收集拥塞之间取得平衡,同时减轻漏斗效应。该方案还动态地调整了锁定门的名称,以适应不同传感器节点的时变传感器读取生成速率。开发了一个包含100个Jennic传感器节点的测试平台,以证明所提出的锁定门指定方案的有效性。

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