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Decentralized System Identification Using Stochastic Subspace Identification for Wireless Sensor Networks

机译:无线传感器网络使用随机子空间识别的分散系统识别

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摘要

Wireless sensor networks (WSNs) facilitate a new paradigm to structural identification and monitoring for civil infrastructure. Conventional structural monitoring systems based on wired sensors and centralized data acquisition systems are costly for installation as well as maintenance. WSNs have emerged as a technology that can overcome such difficulties, making deployment of a dense array of sensors on large civil structures both feasible and economical. However, as opposed to wired sensor networks in which centralized data acquisition and processing is common practice, WSNs require decentralized computing algorithms to reduce data transmission due to the limitation associated with wireless communication. In this paper, the stochastic subspace identification (SSI) technique is selected for system identification, and SSI-based decentralized system identification (SDSI) is proposed to be implemented in a WSN composed of Imote2 wireless sensors that measure acceleration. The SDSI is tightly scheduled in the hierarchical WSN, and its performance is experimentally verified in a laboratory test using a 5-story shear building model.
机译:无线传感器网络(WSN)为民用基础设施的结构识别和监视提供了新的范例。基于有线传感器和集中式数据采集系统的常规结构监视系统的安装和维护成本很高。无线传感器网络已经成为一种可以克服这些困难的技术,使在大型土木结构上部署密集的传感器既可行又经济。但是,与有线传感器网络(其中集中进行数据采集和处理是普遍做法)相反,由于与无线通信相关的限制,WSN要求使用分散的计算算法来减少数据传输。在本文中,选择随机子空间识别(SSI)技术进行系统识别,并提出了基于SSI的分散系统识别(SDSI)在由测量加速度的Imote2无线传感器组成的WSN中实现。 SDSI在分层WSN中进行了严格调度,并且其性能已在实验室测试中使用5层剪切建筑模型进行了实验验证。

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