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Composable Controllers for Physics-Based Character Animation

机译:基于物理的字符动​​画的可组合控制器

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An ambitious goal in the area of physics-based computer animation is the creation of virtual actors that autonomously synthesize realistic human motions and possess a broad repertoire of lifelike motor skills. To this end, the control of dynamic, anthropomorphic figures subject to gravity and contact forces remains a difficult open problem. We propose a framework for composing controllers in order to enhance the motor abilities of such figures. A key contribution of our composition framework is an explicit model of the "pre-conditions" under which motor controllers are expected to function properly. We demonstrate controller composition with pre-conditions determined not only manually, but also automatically based on Support Vector Machine (S VM) learning theory. We evaluate our composition framework using a family of controllers capable of synthesizing basic actions such as balance, protective stepping when balance is disturbed, protective arm reactions when falling, and multiple ways of standing up after a fall. We furthermore demonstrate these basic controllers working in conjunction with more dynamic motor skills within a prototype virtual stuntperson. Our composition framework promises to enable the comunity of physics-based animation practitioners to easily exchange motor controllers and integrate them into dynamic characters.
机译:基于物理的计算机动画领域的一个雄心勃勃的目标是创建自主综合现实人类运动的虚拟演员,并拥有广泛的栩栩如生的运动技能。为此,控制受重力和接触力的动态,拟杆状图的控制仍然是一个困难的开放问题。我们提出了一个组成控制器的框架,以提高这些数字的电动能力。我们的构成框架的一个关键贡献是“预处理”的明确模型,预计电机控制器预计将正常运行。我们展示了使用预处理的控制器组合,不仅可以手动确定,而且基于支持向量机(S VM)学习理论。我们使用能够合成平衡的基本动作的一系列控制器评估我们的构成框架,当平衡受到干扰时,在落下时的保护臂反应,并且在跌倒后站立的多种方式。我们还展示了这些基本控制器与原型虚拟Stuntperson中的更多动态运动技能一起工作。我们的构成框架承诺能够实现基于物理的动画从业者的繁忙,以便轻松地交换电机控制器并将它们集成到动态字符中。

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