Comparison of selected reliability optimization methods in application to the second order design of geodetic network

IF 1.2 Q4 REMOTE SENSING
W. Odziemczyk
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引用次数: 0

Abstract

Abstract Determination of the precision of the designed observations in a geodetic network referred as the Second Order Design is an essential element of the network design process. Although the precision requirements are usually of key importance, ensuring an adequate level of reliability, understood as the possibility of outliers detection can be also vital. The subject of this study is the optimization of the observations’ precision distribution to get the balanced observation reliability indices. The objective of the work is to test usability of two optimization methods based on optimization algorithms, (simulated annealing and Hooke–Jeeves optimization), to solve the mentioned problem. An analytical method proposed by Amiri-Simkooei was applied as a reference. The performance of the above-mentioned methods was tested on two simulated angular-linear networks. Due to acceptable working time and the possibility of defining the boundary conditions on the final solution, the Hooke–Jeeves method appeared to be the most suitable to solve the analysed problem.
可靠性优化方法在大地网二阶设计中的应用比较
摘要在被称为二阶设计的大地测量网中,确定设计观测值的精度是网络设计过程的一个基本要素。尽管精度要求通常非常重要,但确保足够的可靠性水平(即异常值检测的可能性)也至关重要。本研究的主题是优化观测精度分布,以获得平衡的观测可靠性指标。这项工作的目的是测试两种基于优化算法的优化方法(模拟退火和Hooke–Jeeves优化)的可用性,以解决上述问题。采用Amiri Simkooei提出的分析方法作为参考。在两个模拟的角度线性网络上测试了上述方法的性能。由于可接受的工作时间和在最终解决方案上定义边界条件的可能性,Hooke–Jeeves方法似乎最适合解决所分析的问题。
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来源期刊
Journal of Applied Geodesy
Journal of Applied Geodesy REMOTE SENSING-
CiteScore
2.30
自引率
7.10%
发文量
30
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