INVys: Indoor Navigation System for Persons with Visual Impairment Using RGB-D Camera

Widyawan, Muhamad Risqi Utama Saputra, Paulus Insap Santosa
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Abstract

This research presents the INVys system aiming to solve the problem of indoor navigation for persons with visual impairment by leveraging the capabilities of an RGB-D camera. The system utilizes the depth information provided by the camera for micronavigation, which involves sensing and avoiding obstacles in the immediate environment. The INVys system proposes a novel auto-adaptive double thresholding (AADT) method to detect obstacles, calculate their distance, and provide feedback to the user to avoid them. AADT has been evaluated and compared to baseline and auto-adaptive thresholding (AAT) methods using four criteria: accuracy, precision, robustness, and execution time. The results indicate that AADT excels in accuracy, precision, and robustness, making it a suitable method for obstacle detection and avoidance in the context of indoor navigation for persons with visual impairment. In addition to micronavigation, the INVys system utilizes the color information provided by the camera for macro-navigation, which involves recognizing and following navigational markers called optical glyphs. The system uses an automatic glyph binarization method to recognize the glyphs and evaluates them using two criteria: accuracy and execution time. The results indicate that the proposed method is accurate and efficient in recognizing the optical glyphs, making it suitable for use as a navigational marker in indoor environments. Furthermore, the study also provides a correlation between the size of the glyphs, the distance of the recognized glyphs, the tilt condition of the recognized glyphs, and the accuracy of glyph recognition. These correlations define the minimum glyph size that can be practically used for indoor navigation for persons with visual impairment. Overall, this research presents a promising solution for indoor navigation for persons with visual impairment by leveraging the capabilities of an RGB-D camera and proposing novel methods for obstacle detection and avoidance and for recognizing navigational markers.
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INVys:使用 RGB-D 摄像机的视障人士室内导航系统
这项研究提出了 INVys 系统,旨在利用 RGB-D 摄像机的功能解决视觉障碍者的室内导航问题。该系统利用摄像头提供的深度信息进行微导航,包括感知和避开周围环境中的障碍物。INVys 系统提出了一种新颖的自动适应双阈值(AADT)方法来检测障碍物、计算障碍物的距离,并向用户提供反馈以避开障碍物。使用四个标准对 AADT 进行了评估,并与基线方法和自动适应阈值(AAT)方法进行了比较:准确度、精确度、鲁棒性和执行时间。结果表明,AADT 在准确度、精确度和稳健性方面都非常出色,因此适合视障人士在室内导航时使用,是一种检测和避开障碍物的方法。除了微导航,INVys 系统还利用摄像头提供的颜色信息进行宏观导航,包括识别和跟踪称为光学字形的导航标记。该系统使用自动字形二值化方法识别字形,并使用两个标准对其进行评估:准确性和执行时间。结果表明,所提出的方法在识别光学字形方面既准确又高效,适合在室内环境中用作导航标记。此外,研究还提供了字形大小、识别字形的距离、识别字形的倾斜条件与字形识别准确率之间的相关性。这些相关性确定了可实际用于视觉障碍者室内导航的最小字形尺寸。总之,这项研究利用 RGB-D 摄像机的功能,提出了障碍物检测和规避以及导航标记识别的新方法,为视力障碍人士的室内导航提供了一个前景广阔的解决方案。
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