Farrar Charles R, Worden Keith
Engineering Science and Applications Division, Los Alamos National Laboratory Los Alamos, Los Alamos, NM 87545, USA.
Philos Trans A Math Phys Eng Sci. 2007 Feb 15;365(1851):303-15. doi: 10.1098/rsta.2006.1928.
The process of implementing a damage identification strategy for aerospace, civil and mechanical engineering infrastructure is referred to as structural health monitoring (SHM). Here, damage is defined as changes to the material and/or geometric properties of these systems, including changes to the boundary conditions and system connectivity, which adversely affect the system's performance. A wide variety of highly effective local non-destructive evaluation tools are available for such monitoring. However, the majority of SHM research conducted over the last 30 years has attempted to identify damage in structures on a more global basis. The past 10 years have seen a rapid increase in the amount of research related to SHM as quantified by the significant escalation in papers published on this subject. The increased interest in SHM and its associated potential for significant life-safety and economic benefits has motivated the need for this theme issue. This introduction begins with a brief history of SHM technology development. Recent research has begun to recognize that the SHM problem is fundamentally one of the statistical pattern recognition (SPR) and a paradigm to address such a problem is described in detail herein as it forms the basis for organization of this theme issue. In the process of providing the historical overview and summarizing the SPR paradigm, the subsequent articles in this theme issue are cited in an effort to show how they fit into this overview of SHM. In conclusion, technical challenges that must be addressed if SHM is to gain wider application are discussed in a general manner.
对航空航天、土木和机械工程基础设施实施损伤识别策略的过程被称为结构健康监测(SHM)。在此,损伤被定义为这些系统的材料和/或几何特性的变化,包括边界条件和系统连通性的变化,这些变化会对系统性能产生不利影响。有各种各样高效的局部无损评估工具可用于此类监测。然而,在过去30年里进行的大多数结构健康监测研究都试图在更全局的基础上识别结构中的损伤。正如关于该主题发表的论文数量显著增加所表明的那样,在过去10年中,与结构健康监测相关的研究数量迅速增长。对结构健康监测及其相关的重大生命安全和经济效益潜力的兴趣增加,促使了本专题的产生。本引言首先简要介绍结构健康监测技术的发展历程。最近的研究开始认识到,结构健康监测问题从根本上说是一个统计模式识别(SPR)问题,本文详细描述了一种解决此类问题的范式,因为它构成了本专题组织的基础。在提供历史概述并总结统计模式识别范式的过程中,引用了本专题后续的文章,以展示它们如何融入结构健康监测的这一概述。最后,以一般方式讨论了如果结构健康监测要获得更广泛应用必须解决的技术挑战。