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Agent-based artificial immune system approach for adaptive damage detection in monitoring networks

机译:基于代理的人工免疫系统在监控网络中进行自适应损伤检测的方法

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This paper presents an agent-based artificial immune system approach for adaptive damage detection in distributed monitoring networks. The presented approach establishes a new monitoring paradigm by embodying desirable immune attributes, such as adaptation, immune pattern recognition, and self-organization, into monitoring networks. In the artificial immune system-based paradigm, a group of autonomous mobile monitoring agents mimic immune cells (such as B-cells) in the natural immune system, interact locally with monitoring environment, and respond to emerging problems through simulated immune responses. The presented immune-inspired monitoring paradigm has been applied to structural health monitoring. The 'antibody' of a mobile monitoring agent is a pattern recognition algorithm tuned to a certain type of structural damage pattern. The mobile monitoring agent performs damage diagnosis based on structural dynamic response data. Mobile monitoring agents communicate with each other and collaborate with network components based on agent interaction protocols defined in agent standards, the Foundation for Intelligent Physical Agents standards. A mobile agent system embedded in sensor nodes supports the selective generation, migration, communication, and management of mobile monitoring agents automatically. The active structural health monitoring is achieved by distributing mobile monitoring agents to the sites where they are needed. The structural damage diagnosis using mobile monitoring agents and artificial immune pattern recognition method has been tested using a scaled steel bridge structure. The test result shows the feasibility of using this approach for real-time structural damage diagnosis.
机译:本文提出了一种基于代理的人工免疫系统方法,用于分布式监控网络中的自适应损伤检测。提出的方法通过将所需的免疫属性(如适应性,免疫模式识别和自我组织)体现在监视网络中,从而建立了新的监视范式。在基于人工免疫系统的范例中,一组自主的移动监视代理模仿自然免疫系统中的免疫细胞(例如B细胞),与监视环境进行局部交互,并通过模拟的免疫反应来应对新出现的问题。提出的免疫启发式监测范例已应用于结构健康监测。移动监视代理程序的“抗体”是一种模式识别算法,已调整为某种类型的结构损坏模式。移动监视代理程序根据结构动态响应数据执行损坏诊断。移动监控代理根据代理标准(智能物理代理标准)中定义的代理交互协议相互通信并与网络组件协作。嵌入传感器节点中的移动代理系统支持自动选择性地生成,迁移,通信和管理移动监视代理。通过将移动监视代理分发到需要它们的站点来实现主动的结构健康监视。已经使用比例尺钢桥结构测试了使用移动监测剂和人工免疫模式识别方法进行的结构损伤诊断。测试结果表明使用这种方法进行实时结构损伤诊断的可行性。

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