增强算法实现,以协助实时室内地图生成视障人士

J. Jayakody, I. Murray, J. Hermann, S. Lokuliyana, V. Dunuwila
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引用次数: 2

摘要

室内环境的复杂性使得视力受损的人和视力清晰的人都难以导航。尽管手持移动设备已经被开发出来帮助视力受损的人导航,但它们无法捕捉诸如距离、角度和方向等参数。本文提出了一个评价框架;无障碍建筑信息模型(AccessBIM),可用于实时生成室内地图,其中包含现实世界中物体的分类及其位置。AccessBIM数据库配备了两种优化算法;一种数据库优化算法,通过索引、查询重写、模式重新设计和称为“Memcache”的内存优化算法来减少查询执行时间。使用模拟器测试了五个场景,以确定生成的地图的准确性。这两种算法的使用确保了通过从模拟环境中收集的数据生成的实时地图与实际平面图相似。因此,可以得出结论,AccessBIM框架有潜力在与定位和绘图相关的辅助技术中发挥不可或缺的作用,从而显著改善视力障碍患者的生活质量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enhanced Algorithmic Implementation to Assist Real-Time Indoor Map Generation for Vision Impaired Individuals
The complexity of indoor environments has made navigation difficult for vision impaired individuals as well as individuals with clear vision. Although handheld mobility devices have been developed to assist the vision impaired in navigation, they are incapable of capturing parameters such as distance, angle and direction. This paper presents an appraised framework; the Accessible Building Information Model (AccessBIM), which could be used for generating an indoor map in real-time with the classification of real world objects and their locations. The AccessBIM database is equipped with two optimization algorithms; a database optimization algorithm that reduces the time of query execution through indexing, query re-writing, schema redesigning and a memory optimization algorithm known as “Memcache”. Five scenarios were tested using a simulator to determine the accuracy of the map that is generated. The use of the two algorithms ensured that the real-time map generated through the data collected from the simulation environment was similar to the actual floor plan. Hence, it can be concluded that the AccessBIM framework has the potential to play an integral role in assistive technologies related to localization and mapping, thus significantly improving the quality of life for individuals with vision impairment.
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