期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
基于损伤敏感性分析的传感器优化配置研究 被引量:12
1
作者 吴子燕 何银 简晓红 《工程力学》 EI CSCD 北大核心 2009年第5期239-244,共6页
提出了一种基于模态变化对结构损伤敏感性的传感器优化配置方法——敏感性分析法(Sensitivity Analysis Method,SAM),并简述了两种基于数据信息最大化准则的传统传感器优化配置方法:基于Fisher信息阵行列式值最大化的有效独立法(EFI)和... 提出了一种基于模态变化对结构损伤敏感性的传感器优化配置方法——敏感性分析法(Sensitivity Analysis Method,SAM),并简述了两种基于数据信息最大化准则的传统传感器优化配置方法:基于Fisher信息阵行列式值最大化的有效独立法(EFI)和基于运动能最大化的运动能量法(KEM)。运用均方差最小准则(MSE)和模态置信度准则(MAC)来评价这3种传感器优化配置方法的优劣。数值算例表明:敏感性分析法(SAM)是这3种方法中最好的方法。 展开更多
关键词 结构损伤 传感器优化配置 敏感性分析法 均方差最小准则 模态置信度准则
原文传递
Simulation research on a minimum root-mean-square error rotation-fitting algorithm for gravity matching navigation 被引量:12
2
作者 WANG HuBiao WANG Yong +2 位作者 FANG Jian CHAI Hua ZHENG Hui 《Science China Earth Sciences》 SCIE EI CAS 2012年第1期90-97,共8页
Gravity/inertial combination navigation is a leading issue in realizing passive navigation onboard a submarine. A new rotation-fitting gravity matching algorithm, based on the Terrain Contour Matching (TERCOM) algorit... Gravity/inertial combination navigation is a leading issue in realizing passive navigation onboard a submarine. A new rotation-fitting gravity matching algorithm, based on the Terrain Contour Matching (TERCOM) algorithm, is proposed in this paper. The algorithm is based on the principle of least mean-square-error criterion, and searches for a certain matched trajectory that runs parallel to a trace indicated by an inertial navigation system on a gravity base map. A rotation is then made clockwise or counterclockwise through a certain angle around the matched trajectory to look for an optimal matched trajectory within a certain angle span range, and through weighted fitting with another eight suboptimal matched trajectories, the endpoint of the fitted trajectory is considered the optimal matched position. In analysis of the algorithm reliability and matching error, the results from simulation indicate that the optimal position can be obtained effectively in real time, and the positioning accuracy improves by 35% and up to 1.05 nautical miles using the proposed algorithm compared with using the widely employed TERCOM and SITAN methods. Current gravity-aided navigation can benefit from implementation of this new algorithm in terms of better reliability and positioning accuracy. 展开更多
关键词 Terrain Contour Matching algorithm minimum root-mean-square error rotation of coordinates weighted fit gravityaided navigation
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部