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A Formal Methodology to Design and Deploy Dependable Wireless Sensor Networks

机译:设计和部署可靠的无线传感器网络的正式方法论

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摘要

Wireless Sensor Networks (WSNs) are being increasingly adopted in critical applications, where verifying the correct operation of sensor nodes is a major concern. Undesired events may undermine the mission of the WSNs. Hence, their effects need to be properly assessed before deployment, to obtain a good level of expected performance; and during the operation, in order to avoid dangerous unexpected results. In this paper, we propose a methodology that aims at assessing and improving the dependability level of WSNs by means of an event-based formal verification technique. The methodology includes a process to guide designers towards the realization of a dependable WSN and a tool (“ADVISES”) to simplify its adoption. The tool is applicable to homogeneous WSNs with static routing topologies. It allows the automatic generation of formal specifications used to check correctness properties and evaluate dependability metrics at design time and at runtime for WSNs where an acceptable percentage of faults can be defined. During the runtime, we can check the behavior of the WSN accordingly to the results obtained at design time and we can detect sudden and unexpected failures, in order to trigger recovery procedures. The effectiveness of the methodology is shown in the context of two case studies, as proof-of-concept, aiming to illustrate how the tool is helpful to drive design choices and to check the correctness properties of the WSN at runtime. Although the method scales up to very large WSNs, the applicability of the methodology may be compromised by the state space explosion of the reasoning model, which must be faced by partitioning large topologies into sub-topologies.
机译:无线传感器网络(WSN)越来越多地用于关键应用中,在这些应用中,验证传感器节点的正确操作是一个主要问题。意外事件可能会破坏WSN的任务。因此,需要在部署之前适当评估其影响,以获得良好的预期性能;并且在操作过程中,以避免危险的意外结果。在本文中,我们提出了一种旨在通过基于事件的形式验证技术来评估和提高WSN可靠性水平的方法。该方法包括一个指导设计人员实现可靠的WSN的过程以及一个简化其采用的工具(“ ADVISES”)。该工具适用于具有静态路由拓扑的同类WSN。它允许在设计时和运行时针对可定义可接受的故障百分比的WSN自动生成形式规范,以检查正确性属性并评估可靠性指标。在运行时,我们可以根据设计时获得的结果检查WSN的行为,并可以检测突发和意外故障,从而触发恢复过程。该方法的有效性在两个案例研究的背景下进行了概念验证,旨在说明该工具如何帮助驱动设计选择并在运行时检查WSN的正确性。尽管该方法可扩展到非常大的WSN,但该方法的适用性可能会因推理模型的状态空间爆炸而受到损害,这必须通过将大型拓扑划分为子拓扑来面对。

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