Optimization of Inverse Snyder Polyhedral Projection

E. Harrison, Ali Mahdavi-Amiri, F. Samavati
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引用次数: 11

Abstract

Modern techniques in area preserving projections used by cartographers and other glossarial researchers have closed forms when projecting from the sphere to the plane, as based on their initial derivations. Inversions, from the planar map to the spherical approximation of the Earth which are important for modern 3D analysis and visualizations, are slower, requiring iterative root finding approaches, or not determined at all. We introduce optimization techniques for Snyder's inverse polyhedral projection by reducing iterations, and using polynomial approximations for avoiding them entirely. Results including speed up, iteration reduction, and error analysis are provided.
逆Snyder多面体投影的优化
地图学家和其他词汇研究人员使用的区域保存投影的现代技术在从球体投影到平面时具有封闭的形式,这是基于他们最初的推导。从平面地图到地球球面近似值的反演对于现代3D分析和可视化非常重要,但速度较慢,需要迭代的寻根方法,或者根本不确定。我们通过减少迭代来介绍Snyder逆多面体投影的优化技术,并使用多项式近似来完全避免迭代。结果包括加速、迭代减少和误差分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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