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Wireless sensor placement for structural monitoring using information-fusing firefly algorithm

机译:无线传感器放置用于结构监测的使用信息融合萤火虫算法

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Wireless sensor networks (WSNs) are promising technology in structural health monitoring (SHM) applications for their low cost and high efficiency. The limited wireless sensors and restricted power resources in WSNs highlight the significance of optimal wireless sensor placement (OWSP) during designing SHM systems to enable the most useful information to be captured and to achieve the longest network lifetime. This paper presents a holistic approach, including an optimization criterion and a solution algorithm, for optimally deploying self-organizing multi-hop WSNs on large-scale structures. The combination of information effectiveness represented by the modal independence and the network performance specified by the network connectivity and network lifetime is first formulated to evaluate the performance of wireless sensor configurations. Then, an information-fusing firefly algorithm (IFFA) is developed to solve the OWSP problem. The step sizes drawn from a Levy distribution are adopted to drive fireflies toward brighter individuals. Following the movement with Levy flights, information about the contributions of wireless sensors to the objective function as carried by the fireflies is fused and applied to move inferior wireless sensors to better locations. The reliability of the proposed approach is verified via a numerical example on a long-span suspension bridge. The results demonstrate that the evaluation criterion provides a good performance metric of wireless sensor configurations, and the IFFA outperforms the simple discrete firefly algorithm.
机译:无线传感器网络(WSNS)是结构健康监测(SHM)应用中的有前途的技术,其效率低,效率高。有限的无线传感器和WSN中的受限功率资源突出了在设计SHM系统期间最佳无线传感器放置(OWSP)的重要性,以实现最有用的信息并达到最长的网络寿命。本文提出了一种整体方法,包括优化标准和解决方案算法,用于在大规模结构上最佳地部署自组织多跳WSN。首先配制由模式独立性和网络连接和网络生命一生指定的网络性能所代表的信息有效性的组合,以评估无线传感器配置的性能。然后,开发了一种信息融合萤火虫算法(IFFA)以解决OWSP问题。采用从征收分布中汲取的阶梯尺寸来驱动萤火虫更亮的人。在与征收航班的运动之后,有关萤火虫携带的无线传感器对客观函数的贡献的信息融合并应用于将劣质无线传感器移动到更好的位置。通过长跨度悬架桥上的数值示例验证所提出的方法的可靠性。结果表明,评估标准提供了无线传感器配置的良好性能度量,IFFA优于简单的离散萤火虫算法。

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