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Discrete-binary configuration of metaheuristic algorithms for RFM optimization in the case of limited GCPs

机译:在Limited GCPS的情况下RFM优化的离散二进制算法

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摘要

Metaheuristic algorithms have been widely used in determining optimum rational polynomial coefficients (RPCs). By eliminating a number of unnecessary RPCs, these algorithms increase the accuracy of geometric correction of high-resolution satellite images. To this end, these algorithms use ordinary least squares and a number of ground control points (GCPs) to estimate RPCs. Due to the cost of GCP collection, using limited GCPs has become an attractive topic in various research studies. A configuration for RPC estimation using metaheuristic algorithms, namely, discrete-binary configuration for rational function model (DBRFM), is presented to find the optimal number and combination of RPCs in the case of limited GCPs. Based on the fact that the maximum number of RPCs is twice the number of GCPs, the particle/chromosome in the proposed configuration is composed of two binary and discrete parts. This configuration not only is compatible with the nature of the metaheuristic algorithms but also significantly reduces the search space. The proposed method has been tested on various types of remotely sensed data sets. The results of the experiments indicate the superiority of the DBRFM in comparison with the traditional binary configuration of metaheuristic algorithms. (C) 2020 Society of Photo-Optical Instrumentation Engineers (SPIE)
机译:已经广泛用于确定最佳Rational多项式系数(RPC)的血管族算法。通过消除许多不必要的RPC,这些算法增加了高分辨率卫星图像的几何校正的准确性。为此,这些算法使用普通的最小二乘和许多地面控制点(GCP)来估计RPC。由于GCP收集的成本,使用有限的GCP已经成为各种研究研究中有吸引力的话题。呈现用于RPC估计的用于RPC估计,即Rational函数模型(DBRFM)的离散二进制配置,以查找有限GCP的情况下RPC的最佳数量和组合。基于RPC的最大数量是GCP的数量的两倍,所提出的配置中的粒子/染色体由两个二进制和离散部件组成。这种配置不仅与成群质识别算法的性质兼容,而且显着减少了搜索空间。所提出的方法已经在各种类型的远程感测数据集上进行了测试。实验结果表明DBRFM的优越性与传统的成群质算法的二进制配置相比。 (c)2020光学仪表工程师协会(SPIE)

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