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Failure Detection in Wireless Sensor Networks; A Sequence-Based Dynamic Approach

机译:无线传感器网络中的故障检测;基于序列的动态方法

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Wireless Sensor Network (WSN) technology has recently moved out of controlled laboratory settings to real-world deployments. Many of these deployments experience high rates of failure. Common types of failure include node failure, link failure, and node reboot. Due to the resource constraints of sensor nodes, existing techniques for fault detection in enterprise networks are not applicable. Previously proposed WSN fault detection algorithms either rely on periodic transmission of node status data or inferring node status based on passive information collection. The former approach significantly reduces network lifetime, while the latter achieves poor accuracy in dynamic or large networks. Herein, we propose Sequence-Based Fault Detection (SBFD), a novel framework for network fault detection in WSNs. The framework exploits in-network packet tagging using the Fletcher checksum and server-side network path analysis to efficiently deduce the path of all packets sent to the sink. The sink monitors the extracted packet paths to detect persistent path changes which are indicative of network failures. When a failure is suspected, the sink uses control messages to check the status of the affected nodes. SBFD was implemented in TinyOS on TelosB motes and its performance was assessed in a testbed network and in TOSSIM simulation. The method was found to achieve a fault detection accuracy of 90.7% to 95.0% for networks of 25 to 400 nodes at the cost of 0.164% to 0.239% additional control packets and a 0.5% reduction in node lifetime due to in-network packet tagging. Finally, a comparative study was conducted with existing solutions.
机译:无线传感器网络(WSN)技术最近已从受控实验室设置转移到实际部署中。这些部署中有许多部署失败率很高。常见的故障类型包括节点故障,链接故障和节点重新启动。由于传感器节点的资源限制,企业网络中用于故障检测的现有技术不适用。先前提出的WSN故障检测算法要么依赖于节点状态数据的定期传输,要么基于被动信息收集来推断节点状态。前一种方法显着缩短了网络寿命,而后一种方法在动态或大型网络中实现了较差的精度。在本文中,我们提出了基于序列的故障检测(SBFD),这是一种用于WSN中网络故障检测的新颖框架。该框架利用Fletcher校验和和服务器端网络路径分析来利用网络内数据包标记,以有效推断出发送到接收器的所有数据包的路径。接收器监视提取的数据包路径,以检测指示网络故障的持久路径更改。当怀疑发生故障时,接收器使用控制消息来检查受影响节点的状态。 SBFD在Tinos上的TelosB节点上实现,并在测试平台网络和TOSSIM仿真中评估了其性能。发现该方法可为25到400个节点的网络实现90.7%到95.0%的故障检测精度,而额外的控制数据包的成本为0.164%到0.239%,并且由于网络内数据包标记而导致的节点寿命缩短了0.5% 。最后,对现有解​​决方案进行了比较研究。

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