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Web GIS in practice VII: stereoscopic 3-D solutions for online maps and virtual globes

机译:Web GIS实践七:在线地图和虚拟地球仪的立体3-D解决方案

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摘要

Because our pupils are about 6.5 cm apart, each eye views a scene from a different angle and sends a unique image to the visual cortex, which then merges the images from both eyes into a single picture. The slight difference between the right and left images allows the brain to properly perceive the 'third dimension' or depth in a scene (stereopsis). However, when a person views a conventional 2-D (two-dimensional) image representation of a 3-D (three-dimensional) scene on a conventional computer screen, each eye receives essentially the same information. Depth in such cases can only be approximately inferred from visual clues in the image, such as perspective, as only one image is offered to both eyes. The goal of stereoscopic 3-D displays is to project a slightly different image into each eye to achieve a much truer and realistic perception of depth, of different scene planes, and of object relief. This paper presents a brief review of a number of stereoscopic 3-D hardware and software solutions for creating and displaying online maps and virtual globes (such as Google Earth) in "true 3D", with costs ranging from almost free to multi-thousand pounds sterling. A practical account is also given of the experience of the USGS BRD UMESC (United States Geological Survey's Biological Resources Division, Upper Midwest Environmental Sciences Center) in setting up a low-cost, full-colour stereoscopic 3-D system.
机译:因为我们的瞳孔相距约6.5厘米,所以每只眼睛从不同角度观看场景并将唯一的图像发送到视觉皮层,然后皮层将两只眼睛的图像合并为一张图片。左右图像之间的细微差别使大脑能够正确感知场景中的“三维”或深度(立体图像)。但是,当一个人在常规计算机屏幕上观看3-D(三维)场景的常规2-D(二维)图像表示时,每只眼睛基本上接收相同的信息。在这种情况下,深度只能从图像中的视觉线索(例如透视图)大致推断出来,因为两只眼睛都只能看到一张图像。立体3-D显示器的目标是将略有不同的图像投影到每只眼睛中,以实现对深度,不同场景平面和物体释放的真实得多的逼真感知。本文简要介绍了一些立体3D硬件和软件解决方案,这些解决方案可用于以“真实3D”形式创建和显示在线地图和虚拟地球仪(例如Google Earth),其成本从几乎免费到数千英镑不等英镑。还实际说明了USGS BRD UMESC(美国地质调查局的生物资源部,中西部环境科学中心)在建立低成本的全彩色立体3-D系统方面的经验。

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