Inaccuracies when mixing coordinate reference frameworks in a system of systems simulation

B. Duvenhage, J. Nel
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引用次数: 1

Abstract

The modelling of military systems of systems invariably involves the incorporation of existing, often shared, models into larger and more complex simulations. The sharing of models between simulations has long been the goal of the simulation community and although the resulting simulations expand the application domain of the models it comes at a cost. In this paper the authors highlight one of the issues faced, namely the use of different coordinate frameworks on performance and quantifies the errors that could be introduced into the simulation. It starts by providing an overview of the most commonly used coordinate frameworks and then elaborates on some of the experiences gained through its application in the Virtual Ground Based Air Defence System (GBADS) simulator. The focus is on the mixing of flat earth convention and spherical earth convention. The authors conclude with further motivation why a common earth reference model should be used for all simulation entities and, more importantly, why it should be a "real world" earth reference model.
在系统仿真系统中混合坐标参考框架时的不准确性
军事系统的系统建模总是涉及到将现有的(通常是共享的)模型合并到更大、更复杂的仿真中。在模拟之间共享模型一直是模拟社区的目标,尽管由此产生的模拟扩展了模型的应用领域,但这是有代价的。在本文中,作者强调了所面临的一个问题,即在性能上使用不同的坐标框架,并量化了可能引入仿真的误差。它首先提供了最常用的坐标框架的概述,然后详细阐述了通过其在虚拟地面防空系统(GBADS)模拟器中的应用所获得的一些经验。重点讨论了平面地球学说和球形地球学说的混合。作者进一步总结了为什么一个共同的地球参考模型应该用于所有模拟实体,更重要的是,为什么它应该是一个“真实世界”的地球参考模型。
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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