Towards Automated Nautical Chart Compilation and Verification of Output Topology and Safety

Tamer Ali Ali Nada, C. Kastrisios, B. Calder, Christie Ence, Craig Greene, Amber Bethell
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Abstract

Abstract. The compilation of Electronic Navigational Charts (ENCs) requires significant amount of time, labor-intensive efforts, and cost. Despite the advancements in technology and the various research efforts, generalization tasks are still performed manually or semi-manually with expected human errors. The dramatic increase in the amount of data that is collected by modern acquisition systems, in addition to the increasing timeline expected by the end-users, are constantly driving Hydrographic Offices (HOs) toward the investigation and adoption of more advanced and effective ways for automating the generalization tasks to speed up the process, minimize the cost, and improve productivity. Full automation of the nautical chart compilation process has been unreachable due to the strict nautical cartographic constraints (and particularly those of safety and topology) that pose a challenge for most of the available generalization tools, while it remains questionable whether automation can replace human thought processes. In this paper, we discuss a research effort for an Automated Nautical-chart Generalization (ANG) model in the Esri environment. The ANG model builds upon the nautical chart generalization guidelines and practice and utilizes available tools in the Esri environment to perform the generalization of selected ENC features to the target scale. Safety constraints in the marine domain is of utmost importance, however, since most of the readily available tools do not respect safety, the main goal of this effort has been an output with no topological violations. In the current phase of the project, we evaluate safety of soundings and contour for user fixing and while the validation of bathymetry is a well-researched topic, there was the need for an automated process to identify the sections of the generalized contours that have been displaced toward the shallow water side Therefore, this work also presents a safety validation tool that detects the contours’ safety violations in the output. The tool is composed of three main stages that run individually after the ANG model is complete with the aim to highlight the safety violations for fixing by cartographers.
海图自动编制及输出拓扑与安全验证研究
摘要电子航海图(ENCs)的编制需要大量的时间、人力和成本。尽管技术和各种研究努力取得了进步,但泛化任务仍然是手动或半手动执行的,可能会出现人为错误。现代采集系统收集的数据量的急剧增加,以及最终用户期望的时间线的增加,不断推动海道测量局(HOs)调查和采用更先进、更有效的方法来自动化泛化任务,以加快过程,最大限度地降低成本,提高生产力。由于严格的航海制图限制(特别是安全和拓扑限制),海图编制过程的完全自动化一直无法实现,这对大多数可用的泛化工具构成了挑战,而自动化是否可以取代人类的思维过程仍然值得怀疑。本文讨论了在Esri环境下自动海图概化(ANG)模型的研究工作。ANG模型建立在海图泛化指南和实践的基础上,并利用Esri环境中的可用工具将选定的ENC特征泛化到目标比例尺。然而,海洋领域的安全约束是至关重要的,因为大多数现成的工具都不尊重安全,因此这项工作的主要目标是不违反拓扑结构的输出。在项目的当前阶段,我们评估了用户固定的测深和等高线的安全性,虽然测深的验证是一个研究得很好的主题,但需要一个自动化的过程来识别已经向浅水侧偏移的广义等高线的部分,因此,这项工作还提出了一个安全验证工具,可以检测输出中等高线的安全违规。该工具由三个主要阶段组成,在ANG模型完成后分别运行,目的是突出安全违规,供制图员修复。
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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