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Bias-Corrected Weighted Total Least-Squares Adjustment of Condition Equations

机译:条件方程的偏差校正加权总最小二乘平差

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摘要

The total least-squares (TLS) method and its variations have recently received increasing research attention. However, little attention has been given to the weighted TLS adjustment method with condition equations. In this paper, a weighted TLS method designed for condition equations (WTLSC) is presented with the assumption that both the observation vector and design matrix contain errors. The covariance matrices are estimated for both the observation vector and design matrix after the adjustment, and the biases are corrected for the adjusted observation vector, design matrix, and corresponding covariance matrices in the WTLSC method. The proposed approach was used in an adjustment problem of an object point photographed by three terrestrial cameras. The results show that the proposed method resolves the condition equations with errors in the design matrix without linearization in the case study. The proposed WTLSC method generates stable error vector and matrix for the observation vector and design matrix, which satisfy the condition equation in the repeated simulation experiments. The results also show that there are biases in the adjusted observation vector, design matrix, and corresponding covariance matrices, although the biases are small in the case study. (C) 2014 American Society of Civil Engineers.
机译:总最小二乘(TLS)方法及其变体最近受到越来越多的研究关注。但是,对于带有条件方程的加权TLS调整方法的关注很少。本文提出了一种为条件方程式(WTLSC)设计的加权TLS方法,并假设观测向量和设计矩阵都包含误差。调整后,为观测向量和设计矩阵估计协方差矩阵,并使用WTLSC方法校正已调整的观测向量,设计矩阵和相应协方差矩阵的偏差。所提出的方法用于由三个地面相机拍摄的对象点的调整问题。结果表明,该方法在案例研究中无需线性化就能解决设计矩阵中带有误差的条件方程。提出的WTLSC方法为观测矢量和设计矩阵生成稳定的误差矢量和矩阵,在重复的仿真实验中满足条件方程。结果还显示,尽管案例研究中的偏差很小,但调整后的观察向量,设计矩阵和相应的协方差矩阵中存在偏差。 (C)2014年美国土木工程师学会。

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