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A Neural System for Structural Health Monitoring

机译:结构健康监测的神经系统

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摘要

This is an overview paper that discusses the concept of an embeddable structural health monitoring system for use in composite and heterogeneous material systems. The sensor system is formed by integrating groups of autonomous unit cells into a structure, much like neurons in biological systems. Each unit cell consists of an embedded processor and a group of distributed sensors that gives the structure the ability to sense damage. In addition, each unit cell periodically updates a central processor on the status of health in its neighborhood. This micro-architectured synthetic nervous system has an advanced sensing capability based on new continuous sensor technology. This technology uses a plurality of serially connected piezoceramic nodes to form a distributed sensor capable of measuring waves generated in structures by damage events, including impact and crack propagation. Simulations show that the neural system can detect faint acoustic waves in large plates. An experiment demonstrates the use of a simple neural system that was able to measure simulated acoustic emissions that were not clearly recognizable by a single conventional piezoceramic sensor.
机译:这是概述纸张,讨论了用于复合材料和异质材料系统的嵌入结构健康监测系统的概念。传感器系统通过将自主单元细胞组集成到结构中,与生物系统中的神经元相同形成。每个单元电池包括嵌入式处理器和一组分布式传感器,其使结构能够感测损坏。此外,每个单元电池周期性地更新其邻域中健康状况的中央处理器。这种微架构的合成神经系统基于新的连续传感器技术具有先进的传感能力。该技术使用多个串联压电的压电陶瓷节点来形成分布式传感器,该分布式传感器能够通过损坏事件测量结构中产生的波,包括冲击和裂纹传播。仿真表明,神经系统可以在大板中检测微弱的声波。实验表明使用简单的神经系统,该系统能够测量单一常规压电陶瓷传感器的模拟声排放,所述模拟声排放不明确识别。

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