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A comparative study of the stochastic simulation methods applied in structural health monitoring

机译:结构健康监测中随机模拟方法的比较研究

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Purpose - The purpose of this paper is to discuss the characteristics of several stochastic simulation methods applied in computation issue of structure health monitoring (SHM). Design/methodology/approach - On the basis of the previous studies, this research focusses on four promising methods: transitional Markov chain Monte Carlo (TMCMC), slice sampling, slice-Metropolis-Hasting (M-H), and TMCMC-slice algorithm. The slice-M-H is the improved slice sampling algorithm, and the TMCMC-slice is the improved TMCMC algorithm. The performances of the parameters samples generated by these four algorithms are evaluated using two examples: one is the numerical example of a cantilever plate; another is the plate experiment simulating one part of the mechanical structure. Findings - Both the numerical example and experiment show that, identification accuracy of slice-M-H is higher than that of slice sampling; and the identification accuracy of TMCMC-slice is higher than that of TMCMC. In general, the identification accuracy of the methods based on slice (slice sampling and slice-M-H) is higher than that of the methods based on TMCMC (TMCMC and TMCMC-slice). Originality/value - The stochastic simulation methods evaluated in this paper are mainly two categories of representative methods: one introduces the intermediate probability density functions, and another one is the auxiliary variable approach. This paper provides important about the stochastic simulation methods to solve the ill-conditioned computation issue, which is commonly encountered in SHM.
机译:目的-本文的目的是讨论在结构健康监测(SHM)的计算问题中应用的几种随机模拟方法的特性。设计/方法/方法-在先前研究的基础上,本研究着眼于四种有前途的方法:过渡马尔可夫链蒙特卡洛(TMCMC),切片采样,切片都市圈(M-H)和TMCMC切片算法。 slice-M-H是改进的切片采样算法,而TMCMC-slice是改进的TMCMC算法。使用以下两个示例评估由这四种算法生成的参数样本的性能:一个是悬臂板的数值示例;另一个是悬臂板的数值示例。另一个是模拟机械结构一部分的平板实验。研究结果-数值算例和实验均表明,M-H切片的识别精度高于切片采样; TMCMC切片的识别精度高于TMMCC。通常,基于切片的方法(切片采样和切片M-H)的识别准确度高于基于TMCMC的方法(TMCMC和TMCMC切片)的识别准确度。原创性/价值-本文评估的随机模拟方法主要包括两类代表性方法:一类是引入中间概率密度函数,另一类是辅助变量方法。本文为解决SHM中经常遇到的病态计算问题提供了随机仿真方法,具有重要意义。

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