首页> 外文会议>ASME conference on smart materials, adaptive structures and intelligent systems;SMASIS2009 >ON THE USE OF THE POSTERIOR CRAMER-RAO LOWER BOUND FOR DAMAGE ESTIMATION IN STRUCTURAL HEALTH MANAGEMENT
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ON THE USE OF THE POSTERIOR CRAMER-RAO LOWER BOUND FOR DAMAGE ESTIMATION IN STRUCTURAL HEALTH MANAGEMENT

机译:后Cramer-Rao下限在结构健康管理中的损伤估计

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The use of the posterior Cramer-Rao lower bound (PCRLB) as a lower bound for the mean-squared estimation error (MSEE) of progressive damage is investigated. The estimation problem is formulated in terms of a stochastic dynamic system model that describes the random evolution of damage and provides measurement uncertainty. Based on whether the system is linear or nonlinear, sequential Monte Carlo techniques are used to approximate the posterior probability density function and thus obtain the damage state estimate. The resulting MSEE is compared to the lower bound offered by the PCRLB that is obtained from the implied state transition probability density function and the measurement likelihood function. The progressive estimation results and the PCRLB are demonstrated for fatigue crack estimation in an aluminum compact-tension (CT) sample subjected to variable-amplitude loading.
机译:研究了使用后部Cramer-Rao下限(PCRLB)作为进行性损伤的均方估计误差(MSEE)的下限。估计问题是根据随机动态系统模型来描述的,该模型描述了损害的随机演变并提供了测量不确定性。基于系统是线性的还是非线性的,顺序蒙特卡罗技术用于近似后验概率密度函数,从而获得损伤状态估计值。将所得的MSEE与从隐含状态转换概率密度函数和测量似然函数获得的PCRLB提供的下限进行比较。渐进估计结果和PCRLB证明了在可变振幅载荷下的铝压紧(CT)样品中的疲劳裂纹估计。

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