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Virtual Reality and the Unfolding of Higher Dimensions

机译:虚拟现实和更高尺寸的展开

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As virtual/augmented reality evolves, the need for spaces that are responsive to structures independent from three dimensional spatial constraints, become apparent. The visual medium of computer graphics may also challenge these self imposed constraints. If one can get used to how projections affect 3D objects in two dimensions, it may also be possible to compose a situation in which to get used to the variations that occur while moving through higher dimensions. The presented application is an enveloping landscape of concave and convex forms, which are determined by the orientation and displacement of the user in relation to a grid made of tesseracts (cubes in four dimensions). The interface accepts input from tridimensional and four-dimensional transformations, and smoothly displays such interactions in real-time. The motion of the user becomes the graphic element whereas the higher dimensional grid references to his/her position relative to it. The user learns how motion inputs affect the grid, recognizing a correlation between the input and the transformations. Mapping information to complex grids in virtual reality is valuable for engineers, artists and users in general because navigation can be internalized like a dance pattern, and further engage us to maneuver space in order to know and experience.
机译:随着虚拟/增强现实的发展,需要响应于独立于三维空间约束的结构的空间变得明显。计算机图形的视觉介质也可能挑战这些自我强加的约束。如果人们可以习惯投影如何影响两个维度的3D对象,也可以组成在通过更高尺寸移动时达到发生的变化的情况。所呈现的应用是凹凸形式的包裹景观,其由用户与由TESSERACTS(四维的立方体)相关的网格的方向和位移来决定。该接口接受来自Tripimensional和四维变换的输入,并平滑地实时显示此类交互。用户的运动成为图形元素,而较高的尺寸网格相对于其相对于其位置。用户了解运动输入如何影响网格,识别输入与变换之间的相关性。将信息映射到虚拟现实中的复杂网格对于工程师,艺术家和用户通常是有价值的,因为导航可以像舞蹈模式一样内化,并进一步将我们互动空间以便了解和经验。

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