在三维激光扫描仪使用过程中,为了减小点云拼接时的误差问题,本文利用同方差多元变量的EIV(Errors In Variables)模型及总体最小二乘的方法解决三维空间点的相似变换,较传统的迭代算法计算空间坐标转换的方法,具有非迭代性、可靠性和计...在三维激光扫描仪使用过程中,为了减小点云拼接时的误差问题,本文利用同方差多元变量的EIV(Errors In Variables)模型及总体最小二乘的方法解决三维空间点的相似变换,较传统的迭代算法计算空间坐标转换的方法,具有非迭代性、可靠性和计算过程中的简便性。最后,利用实际工程案例对非迭代算法的有效性进行了验证。展开更多
Because the real input acceleration cannot be obtained during the error model identification of inertial navigation platform, both the input and output data contain noises. In this case, the conventional regression mo...Because the real input acceleration cannot be obtained during the error model identification of inertial navigation platform, both the input and output data contain noises. In this case, the conventional regression model and the least squares (LS) method will result in bias. Based on the models of inertial navigation platform error and observation error, the errors-in-variables (EV) model and the total least squares (TLS) method axe proposed to identify the error model of the inertial navigation platform. The estimation precision is improved and the result is better than the conventional regression model based LS method. The simulation results illustrate the effectiveness of the proposed method.展开更多
针对部分变量误差(partial EIV)模型的加权整体最小二乘(weighted total least squares,WTLS)估值的计算需要多次迭代且效率低下的情况,根据加权LS(least square)原理,通过改进目标函数,并运用矩阵微分运算以及矩阵反演变换,提出了一种...针对部分变量误差(partial EIV)模型的加权整体最小二乘(weighted total least squares,WTLS)估值的计算需要多次迭代且效率低下的情况,根据加权LS(least square)原理,通过改进目标函数,并运用矩阵微分运算以及矩阵反演变换,提出了一种计算partial EIV模型WTLS估值的新算法。算例计算结果表明,新算法具有迭代次数少、计算效率高等优点。展开更多
文摘在三维激光扫描仪使用过程中,为了减小点云拼接时的误差问题,本文利用同方差多元变量的EIV(Errors In Variables)模型及总体最小二乘的方法解决三维空间点的相似变换,较传统的迭代算法计算空间坐标转换的方法,具有非迭代性、可靠性和计算过程中的简便性。最后,利用实际工程案例对非迭代算法的有效性进行了验证。
基金supported by the National Security Major Basic Research Project of China (973-61334).
文摘Because the real input acceleration cannot be obtained during the error model identification of inertial navigation platform, both the input and output data contain noises. In this case, the conventional regression model and the least squares (LS) method will result in bias. Based on the models of inertial navigation platform error and observation error, the errors-in-variables (EV) model and the total least squares (TLS) method axe proposed to identify the error model of the inertial navigation platform. The estimation precision is improved and the result is better than the conventional regression model based LS method. The simulation results illustrate the effectiveness of the proposed method.
文摘针对部分变量误差(partial EIV)模型的加权整体最小二乘(weighted total least squares,WTLS)估值的计算需要多次迭代且效率低下的情况,根据加权LS(least square)原理,通过改进目标函数,并运用矩阵微分运算以及矩阵反演变换,提出了一种计算partial EIV模型WTLS估值的新算法。算例计算结果表明,新算法具有迭代次数少、计算效率高等优点。