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首页> 外文期刊>The Journal of Navigation >Sensory Navigation Device for Blind People
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Sensory Navigation Device for Blind People

机译:盲人感觉导航仪

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This paper presents a new Electronic Travel Aid (ETA) 'Acoustic Prototype' which is especially suited to facilitate the navigation of visually impaired users. The device consists of a set of 3-Dimensional Complementary Metal Oxide Semiconductor (3-D CMOS) image sensors based on the three-dimensional integration and Complementary Metal-Oxide Semiconductor (CMOS) processing techniques implemented into a pair of glasses, stereo headphones as well as a Field-Programmable Gate Array (FPGA) used as processing unit. The device is intended to be used as a complementary device to navigation through both open known and unknown environments. The FPGA and the 3D-CMOS image sensor electronics control object detection. Distance measurement is achieved by using chip-integrated technology based on the Multiple Short Time Integration method. The processed information of the object distance is presented to the user via acoustic sounds through stereophonic headphones. The user interprets the information as an acoustic image of the surrounding environment. The Acoustic Prototype transforms the surface of the objects of the real environment into acoustical sounds. The method used is similar to a bat's acoustic orientation. Having good hearing ability, with few weeks training the users are able to perceive not only the presence of an object but also the object form (that is, if the object is round, if it has corners, if it is a car or a box, if it is a cardboard object or if it is an iron or cement object, a tree, a person, a static or moving object). The information is continuously delivered to the user in a few nanoseconds until the device is shut down, helping the end user to perceive the information in real time.
机译:本文介绍了一种新的电子旅行援助(ETA)“声学原型”,它特别适合于方便视障用户的导航。该设备由一组基于三维集成的3维互补金属氧化物半导体(3-D CMOS)图像传感器和互补金属氧化物半导体(CMOS)处理技术实现,该技术在眼镜,立体声耳机中实现。以及用作处理单元的现场可编程门阵列(FPGA)。该设备旨在用作在开放的已知和未知环境中导航的补充设备。 FPGA和3D-CMOS图像传感器电子设备控制对象检测。距离测量是通过使用基于多重短时积分方法的芯片集成技术来实现的。被处理的物距信息通过立体声耳机经由声音呈现给用户。用户将信息解释为周围环境的声音图像。声学原型将真实环境的对象表面转换为声学声音。所使用的方法类似于蝙蝠的声音定向。具有良好的听力能力,经过数周的培训,用户不仅可以感知物体的存在,还可以感知物体的形状(即,如果物体是圆形的,是否有角的,是否是汽车或盒子的, ,如果它是纸板对象,或者是铁或水泥对象,则是树木,人,静止或移动的对象)。信息将在几纳秒内连续交付给用户,直到设备关闭,从而帮助最终用户实时感知信息。

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