Software at Scale for Building Resilient Wireless Sensor Networks

C. Martino
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Abstract

Wireless Sensor Networks (WSNs) are widely recognized as a promising solution to build next-generation monitoring systems. Their industrial uptake is however still compromised by the low level of trust on their performance and dependability. Whereas analytical models represent a valid mean to assess nonfunctional properties via simulation, their wide use is still limited by the complexity and dynamicity of WSNs, which lead to unaffordable modeling costs. This paper proposes an approach to characterize the resiliency of the software of WSN software to failures. The focus is in providing a procedure and related tools to assess i) how the node software, hardware platforms, topology and routing protocols impact on the failure behavior of nodes and and of the network, and, vice-versa, ii) how the failure of a node mutates the behavior of the running software and routing protocol. The approach adopts a software characterization process which is based on i) Failure Mode and Effect Analysis, ii) automated fault injection experiments, iii) high-level description of the fault tolerant mechanisms of WSN software in a proposed framework.
构建弹性无线传感器网络的大规模软件
无线传感器网络(WSNs)被广泛认为是构建下一代监控系统的一个有前途的解决方案。然而,由于对其性能和可靠性的信任度较低,它们的工业应用仍然受到影响。虽然分析模型是通过仿真评估非功能特性的有效手段,但其广泛应用仍然受到wsn的复杂性和动态性的限制,这导致建模成本难以承受。本文提出了一种表征WSN软件对故障的弹性的方法。重点是提供一个程序和相关工具来评估i)节点软件、硬件平台、拓扑和路由协议如何影响节点和网络的故障行为,反之亦然;ii)节点故障如何改变运行软件和路由协议的行为。该方法采用了一种软件表征过程,该过程基于i)故障模式和影响分析,ii)自动故障注入实验,iii)在所提出的框架中对WSN软件的容错机制进行高级描述。
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