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Artificial fishes

机译:人工鱼

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摘要

This paper proposes a framework for animation that can achieve the intricacy of motion evident in certain natural ecosystems with minimal input from the animator. The realistic appearance, movement, and behavior of individual animals, as well as the patterns of behavior evident in groups of animals fall within the scope of the framework. Our approach to emulating this level of natural complexity is to model each animal holistically as an autonomous agent situated in its physical world. To demonstrate the approach, we develop a physics-based, virtual marine world. The world is inhabited by artificial fishes that can swim hydrodynamically in simulated water through the motor control of internal muscles that motivates fins. Their repertoire of behaviors relies on their perception of the dynamic environment. As in nature, the detailed motions of artificial fishes in their virtual habitat are not entirely predictable because they are not scripted.

机译:

本文提出了一个动画框架,该框架可以在某些自然生态系统中以最少的动画师输入实现复杂的运动。单个动物的逼真的外观,运动和行为,以及动物群中明显的行为模式,都属于框架范围之内。我们模拟这种自然复杂性的方法是将每只动物作为位于其物理世界中的自治代理人进行整体建模。为了演示该方法,我们开发了一个基于物理的虚拟海洋世界。世界上有人工鱼居住,它们可以通过刺激鳍的内部肌肉的运动控制在模拟水中进行水力动力学游动。他们的行为举止取决于他们对动态环境的感知。与自然界一样,人工鱼在其虚拟栖息地中的详细运动也不是完全可以预测的,因为它们没有脚本。

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