Integration of terrain elevation and feature data for tomorrow's cockpits

R. Young, J. Siferd
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引用次数: 3

Abstract

The major use of digital terrain and feature data has been for radar prediction, intervisibility calculations, and in some cases, a replacement for conventional paper charts. It is noted that, as additional and more accurate spatial (digital) data products become available, and new digital utilization technologies are developed, new weapon systems will become increasingly dependent on these spatial products. Spatial (digital) data products are defined as a combination of old (archival) recent, and/or real-time data. These products will improve mission performances in the areas of mission planning and optimum route selection; threat and terrain detection and obstacle avoidance; autonomous navigation; dynamic route planning; and situation awareness. These digital data products will be included as an integral part of specific weapon systems. Using the Integrated Terrain Access and Retrieval System (ITARS) as a prototype for a future information management system, some of the efforts at integrating these data into the cockpit are described.<>
为未来的驾驶舱整合地形高程和特征数据
数字地形和特征数据的主要用途是雷达预测、互视性计算,在某些情况下,还可以替代传统的纸质海图。值得注意的是,随着更多和更精确的空间(数字)数据产品的出现,以及新的数字利用技术的发展,新的武器系统将越来越依赖于这些空间产品。空间(数字)数据产品被定义为旧(档案)、最近和/或实时数据的组合。这些产品将在任务规划和最佳路线选择方面改善任务性能;威胁和地形探测及避障;自主导航;动态路线规划;还有态势感知。这些数字数据产品将作为特定武器系统的组成部分。使用综合地形访问和检索系统(ITARS)作为未来信息管理系统的原型,描述了将这些数据集成到驾驶舱的一些努力
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