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Providing Self-Healing Ability for Wireless Sensor Node by Using Reconfigurable Hardware

机译:通过使用可重配置硬件为无线传感器节点提供自愈能力

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Wireless sensor networks (WSNs) have received tremendous attention over the past ten years. In engineering applications of WSNs, a number of sensor nodes are usually spread across some specific geographical area. Some of these nodes have to work in harsh environments. Dependability of the Wireless Sensor Network (WSN) is very important for its successful applications in the engineering area. In ordinary research, when a node has a failure, it is usually discarded and the network is reorganized to ensure the normal operation of the WSN. Using appropriate WSN re-organization methods, though the sensor networks can be reorganized, this causes additional maintenance costs and sometimes still decreases the function of the networks. In those situations where the sensor networks cannot be reorganized, the performance of the whole WSN will surely be degraded. In order to ensure the reliable and low cost operation of WSNs, a method to develop a wireless sensor node with self-healing ability based on reconfigurable hardware is proposed in this paper. Two self-healing WSN node realization paradigms based on reconfigurable hardware are presented, including a redundancy-based self-healing paradigm and a whole FPAA/FPGA based self-healing paradigm. The nodes designed with the self-healing ability can dynamically change their node configurations to repair the nodes' hardware failures. To demonstrate these two paradigms, a strain sensor node is adopted as an illustration to show the concepts. Two strain WSN sensor nodes with self-healing ability are developed respectively according to the proposed self-healing paradigms. Evaluation experiments on self-healing ability and power consumption are performed. Experimental results show that the developed nodes can self-diagnose the failures and recover to a normal state automatically. The research presented can improve the robustness of WSNs and reduce the maintenance cost of WSNs in engineering applications.
机译:在过去的十年中,无线传感器网络(WSN)受到了极大的关注。在WSN的工程应用中,许多传感器节点通常分布在某些特定的地理区域。其中一些节点必须在恶劣的环境中工作。无线传感器网络(WSN)的可靠性对于其在工程领域的成功应用非常重要。在常规研究中,当节点发生故障时,通常会丢弃该节点,并重组网络以确保WSN的正常运行。使用适当的WSN重组方法,尽管可以重组传感器网络,但这会导致额外的维护成本,并且有时仍会降低网络的功能。在传感器网络无法重组的情况下,整个WSN的性能肯定会降低。为了保证无线传感器网络的可靠和低成本运行,提出了一种基于可重构硬件的具有自愈能力的无线传感器节点的开发方法。提出了两种基于可重构硬件的WSN节点自修复范例,包括基于冗余的自修复范例和整个基于FPAA / FPGA的自修复范例。具有自我修复功能的节点可以动态更改其节点配置,以修复节点的硬件故障。为了演示这两个范例,以应变传感器节点为例来说明概念。根据提出的自修复范例,分别开发了两个具有自修复能力的WSN传感器节点。进行了自我修复能力和功耗的评估实验。实验结果表明,所开发的节点可以自我诊断故障并自动恢复到正常状态。提出的研究可以提高无线传感器网络的健壮性,并降低其在工程应用中的维护成本。

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