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基于联合迭代重建技术的超声CT重建算法 被引量:8
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作者 王浩全 《计算机应用》 CSCD 北大核心 2010年第7期1844-1846,共3页
在研究超声CT成像原理的基础上,对阵列检测方法进行了探讨。通过对探头布置方式的改进,增加了成像所需的数据量。基于最小二乘方准则,利用联合迭代重建算法,采用四边扫描算法求解相关系数矩阵,通过不断修正误差逼近真实值,进而实现速度... 在研究超声CT成像原理的基础上,对阵列检测方法进行了探讨。通过对探头布置方式的改进,增加了成像所需的数据量。基于最小二乘方准则,利用联合迭代重建算法,采用四边扫描算法求解相关系数矩阵,通过不断修正误差逼近真实值,进而实现速度矩阵的求取。数值仿真表明:采用上述方法能够明显减小重建误差,改善层析成像效果。 展开更多
关键词 联合迭代重建技术 阵列检测 超声CT 速度重建 最小二乘方准则
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Comparison of GUF and Monte Carlo methods to evaluate task-specific uncertainty in laser tracker measurement 被引量:1
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作者 杨景照 李国喜 +2 位作者 吴宝中 龚京忠 王杰 《Journal of Central South University》 SCIE EI CAS 2014年第10期3793-3804,共12页
Measurement uncertainty plays an important role in laser tracking measurement analyses. In the present work, the guides to the expression of uncertainty in measurement(GUM) uncertainty framework(GUF) and its supplemen... Measurement uncertainty plays an important role in laser tracking measurement analyses. In the present work, the guides to the expression of uncertainty in measurement(GUM) uncertainty framework(GUF) and its supplement, the Monte Carlo method, were used to estimate the uncertainty of task-specific laser tracker measurements. First, the sources of error in laser tracker measurement were analyzed in detail, including instruments, measuring network fusion, measurement strategies, measurement process factors(such as the operator), measurement environment, and task-specific data processing. Second, the GUM and Monte Carlo methods and their application to laser tracker measurement were presented. Finally, a case study involving the uncertainty estimation of a cylindricity measurement process using the GUF and Monte Carlo methods was illustrated. The expanded uncertainty results(at 95% confidence levels) obtained with the Monte Carlo method are 0.069 mm(least-squares criterion) and 0.062 mm(minimum zone criterion), respectively, while with the GUM uncertainty framework, none but the result of least-squares criterion can be got, which is 0.071 mm. Thus, the GUM uncertainty framework slightly underestimates the overall uncertainty by 10%. The results demonstrate that the two methods have different characteristics in task-specific uncertainty evaluations of laser tracker measurements. The results indicate that the Monte Carlo method is a practical tool for applying the principle of propagation of distributions and does not depend on the assumptions and limitations required by the law of propagation of uncertainties(GUF). These features of the Monte Carlo method reduce the risk of an unreliable measurement of uncertainty estimation, particularly in cases of complicated measurement models, without the need to evaluate partial derivatives. In addition, the impact of sampling strategy and evaluation method on the uncertainty of the measurement results can also be taken into account with Monte Carlo method, which plays a guiding role in measurement planning. 展开更多
关键词 task-specific uncertainty laser tracker measurement uncertainty evaluation Monte Carlo method uncertainy framework(GUF)
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