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Development of the Walk Navigation System for Blind People by Using 3D Sound User Interface - Constructing a Testbed

机译:使用3D声音用户界面开发盲人盲人的行走导航系统 - 构建试验台

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In Japan, the chance of going out for blind people is increasing. This progresses the study of walk navigation system by using the speech language for blind people. However, it seems to be difficult for the blind people to understand the indicated direction and the surrounding geographical spatial information. Then, for example, the blind people cannot trace correct route. Eventually, there is possibility that the blind people lose one's way. To solve these problems, the authors developed walk navigation system by using the 3D sound user interface. And the authors constructed the testbed of the walk navigation system by using the 3D sound user interface. 3D sound user interface uses 3D sound's characteristic that 3D sound is able to display a sound from all directions. Workings of the 3D sound user interface are (1) Displaying 3D sound image coming from a direction that the user should direct to, (2) Displaying 3D sound images coming from the position of the indoor equipment and the barrier for the user. The user can understand surrounding geographical space information by using the 3D sound user interface that the user can reach the destination Illustration of the walk navigation system by using 3D sound user interface is as follows. First, user's actual location was measured by the RFID system and the gyro sensor. The RFID system and the gyro sensor were assembled at the top of the cane. The coordinate data of user's actual location was calculated from cane's location and attitude. Secondly, navigational directional information was derived from user's actual location and the map information. The map information was stored in the memory of the control computer. Thirdly, 3D sound was generated based on navigational directional information. Lastly, it was displayed to the user via the stereo headphone And the usability evaluation experiment of walk navigation system by using the 3D sound user interface was performed. The purpose of this experiment is measuring usability of developed walk navigation system. Therefore, the usability of development navigation system to conventional navigation system was compared. This conventional navigation system was walk navigation system by using the speech language. The subjects were blind peoples and sighted peoples. Sighted peoples were reduced to pseudo blind people by loaded the eye mask. The method was tracing the navigated root. The experimental measurements are route tracing accuracy, achievement rate, achievement time, walking distance, mental workload(NASA-TLX)and evaluation grid method. As a result of achievement time and walking distance, development navigation system was lower than conventional navigation system. And, as a result of mental workload and evaluation grid method, development navigation system was much higher in terms of quality of usability than conventional navigation system. As a result of these experiments, it was suggested that the blind people could walk smoothly and understudied surrounding geographical space information by using the 3D sound user interface.
机译:在日本,出于盲人的机会正在增加。这通过使用盲人的语言语言来研究步行导航系统的研究。然而,盲人似乎很难理解指示的方向和周围地理空间信息。然后,例如,盲人无法追踪正确的路线。最终,盲人可能会失去一个人的方式。为了解决这些问题,作者使用3D声音用户界面开发了Walk导航系统。作者通过使用3D声音用户界面构建了漫游导航系统的测试平。 3D声音用户界面使用3D声音的特征,即3D声音能够从所有方向显示声音。 3D声音用户界面的工作是(1)显示来自用户应该指向的方向的3D声像,(2)显示来自室内设备的位置和用户屏障的3D声音图像。用户可以通过使用3D声音用户界面来了解周围的地理空间信息,用户可以使用3D声音用户界面到达步行导航系统的目的地图。首先,用户的实际位置由RFID系统和陀螺仪传感器测量。 RFID系统和陀螺仪传感器组装在甘蔗的顶部。用户实际位置的坐标数据由甘蔗的位置和态度计算。其次,导航方向信息来自用户的实际位置和地图信息。地图信息存储在控制计算机的存储器中。第三,基于导航方向信息生成3D声音。最后,通过立体声耳机和​​步行导航系统的可用性评估实验,通过使用3D声音用户界面向用户显示。该实验的目的是测量发达的行走导航系统的可用性。因此,比较了发展导航系统对传统导航系统的可用性。这种传统的导航系统是使用语言语言的行走导航系统。受试者是盲目的人民和患者。被视力的人们通过装在眼罩上减少到伪盲人。该方法正在追踪导航的根。实验测量是路线跟踪精度,成就率,成就时间,步行距离,心理工作量(NASA-TLX)和评估网格方法。由于成就时间和步行距离,发展导航系统低于传统的导航系统。而且,由于心理工作量和评估网格方法,在可用性质量方面比传统导航系统的质量高得多。由于这些实验,有人建议盲人通过使用3D声音用户界面可以顺利和深入地走路周围的地理空间信息。

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