Lessons from Bridge Structural Health Monitoring (SHM) and Their Implications for the Development of Cyber-Physical Systems

Emin Aktan, Ivan Bartoli, B. Glišić, Carlo Rainieri
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Abstract

This paper summarizes the lessons learned after several decades of exploring and applying Structural Health Monitoring (SHM) in operating bridge structures. The challenges in real-time imaging and processing of large amounts of sensor data at various bandwidths, synchronization, quality check and archival, and most importantly, the interpretation of the structural condition, performance, and health are necessary for effective applications of SHM to major bridges and other infrastructures. Writers note that such SHM applications have served as the forerunners of cyber infrastructures, which are now recognized as the key to smart infrastructures and smart cities. Continued explorations of SHM in conjunction with control, therefore, remain vital for assuring satisfactory infrastructure system performance at the operational, damageability, and safety limit-states in the future. Researchers in the SHM of actually constructed systems, given their experience in monitoring major structures in the field, are well positioned to contribute to these vital needs. Especially, SHM researchers who have learned how to integrate the contributions from various disciplines such as civil, electrical, mechanical, and materials engineering; computer and social sciences; and architecture and urban planning would appear to be well equipped and could become instrumental in assessing the health and performance of urban regions, which today must function by optimizing and balancing the needs of Livability, Sustainability, and Resilience (LSR).
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桥梁结构健康监测(SHM)的经验教训及其对网络-物理系统发展的影响
本文总结了几十年来在运营桥梁结构中探索和应用结构健康监测(SHM)的经验教训。要在大型桥梁和其他基础设施中有效应用 SHM,就必须应对各种带宽下大量传感器数据的实时成像和处理、同步、质量检查和存档等方面的挑战,最重要的是对结构状况、性能和健康状况的解释。作者指出,此类 SHM 应用已成为网络基础设施的先驱,而网络基础设施现已被公认为智能基础设施和智能城市的关键。因此,继续探索将 SHM 与控制相结合,对于确保未来基础设施系统在运行、可破坏性和安全极限状态下的性能令人满意至关重要。实际建造系统的 SHM 研究人员在实地监测主要结构方面经验丰富,完全有能力满足这些重要需求。尤其是 SHM 研究人员,他们学会了如何将土木工程、电气工程、机械工程和材料工程、计算机科学和社会科学、建筑学和城市规划等不同学科的贡献整合在一起,他们似乎具备了良好的条件,可以在评估城市地区的健康状况和性能方面发挥重要作用,如今,城市地区必须通过优化和平衡宜居性、可持续性和复原力(LSR)的需求来发挥作用。
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