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精密转台角分度误差补偿 被引量:26
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作者 王福全 王珏 +1 位作者 谢志江 刘丰林 《光学精密工程》 EI CAS CSCD 北大核心 2017年第8期2165-2172,共8页
为了修正精密转台中由圆光栅安装偏心、倾斜等引起的角分度误差,提出一种基于稀疏分解的角分度误差补偿方法。首先,分析了圆光栅安装偏心、倾斜等对精密转台角分度误差的影响。然后,根据圆光栅测角误差中不同阶次误差项的特性,结合稀疏... 为了修正精密转台中由圆光栅安装偏心、倾斜等引起的角分度误差,提出一种基于稀疏分解的角分度误差补偿方法。首先,分析了圆光栅安装偏心、倾斜等对精密转台角分度误差的影响。然后,根据圆光栅测角误差中不同阶次误差项的特性,结合稀疏分解思想与谐波分析建立了角分度误差补偿模型,对转台的角分度误差进行补偿。最后,搭建试验平台,采用提出的角分度误差补偿模型对精密转台角分度误差进行修正,验证该方法的有效性。试验结果表明:该方法能够将角分度精度提高2个数量级,对角分度误差最大值为90.85"的转台进行误差补偿后,能够使角定位误差的最大值减小到0.64"。采用该方法进行误差补偿后,能够显著提高角度定位精度,结果满足精密转台角位移的高精度测试要求。 展开更多
关键词 精密转台 角分度误差 稀疏分解 误差补偿
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多面棱体角分度误差分离技术——多次转位法
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作者 蔺小军 《制造技术与机床》 CSCD 北大核心 2002年第7期21-23,共3页
介绍了多面棱体角分度误差分离技术———多次转位法。采用该技术可以分离多面棱体角分度误差和测量仪器的系统误差 。
关键词 多次转位法 多面棱体 误差分离 角分度误差
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Resolution performance analysis of cumulants-based rank reduction estimator in presence of unexpected modeling errors
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作者 王鼎 吴瑛 《Journal of Central South University》 SCIE EI CAS 2013年第11期3116-3130,共15页
Compared to the rank reduction estimator (RARE) based on second-order statistics (called SOS-RARE), the RARE employing fourth-order cumulants (referred to as FOC-RARE) is capable of dealing with more sources and... Compared to the rank reduction estimator (RARE) based on second-order statistics (called SOS-RARE), the RARE employing fourth-order cumulants (referred to as FOC-RARE) is capable of dealing with more sources and mitigating the negative influences of the Gaussian colored noise. However, in the presence of unexpected modeling errors, the resolution behavior of the FOC-RARE also deteriorate significantly as SOS-RARE, even for a known array covariance matrix. For this reason, the angle resolution capability of the FOC-RARE was theoretically analyzed. Firstly, the explicit formula for the mathematical expectation of the FOC-RARE spatial spectrum was derived through the second-order perturbation analysis method. Then, with the assumption that the unexpected modeling errors were drawn from complex circular Gaussian distribution, the theoretical formulas for the angle resolution probability of the FOC-RARE were presented. Numerical experiments validate our analytical results and demonstrate that the FOC-RARE has higher robustness to the unexpected modeling en'ors than that of the SOS-RARE from the resolution point of view. 展开更多
关键词 performance analysis rank reduction estimator (RARE) fourth-order cumulants (FOC) spatial spectrum angle resolution probability unexpected modeling errors
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