论文标题

rfuniverse:一个用于体现AI的多物理模拟平台

RFUniverse: A Multiphysics Simulation Platform for Embodied AI

论文作者

Fu, Haoyuan, Xu, Wenqiang, Ye, Ruolin, Xue, Han, Yu, Zhenjun, Tang, Tutian, Li, Yutong, Du, Wenxin, Zhang, Jieyi, Lu, Cewu

论文摘要

多物理现象,涉及物理法不同方面的耦合效应在现实世界中普遍存在,并且在执行日常家庭任务时经常会遇到。寻求协助或替代人类劳动者的智能代理人将需要学会应对家庭任务环境中的这种现象。为了使代理商具有这种能力,研究界需要一个模拟环境,该环境将有能力充当这些智能代理的训练过程的测试台,以便能够支持多物理耦合效果。尽管在工业生产中已经采用了许多用于多物理模拟的成熟模拟软件,但这些技术尚未应用于机器人学习或体现的AI研究。为了弥合差距,我们提出了一个名为Rfuniverse的新型模拟环境。该模拟器不仅可以计算刚性和多体动力学,而且可以在日常生活中通常观察到的多物理耦合效应,例如空气固定相互作用,流体固体相互作用和传热。由于该模拟器具有独特的多物理能力,因此我们可以根据模拟环境中的多物理耦合效应在部署到现实世界之前涉及复杂动态的任务。 Rfuniverse提供了多个接口,使用户以各种方式与虚拟世界进行交互,这对于学习,计划和控制都是必不可少的。我们通过加强学习进行了三个任务,包括切割食物,推水和毛巾捕捉。我们还使用经典的计划控制范式评估黄油推动。该模拟器根据多物理耦合效应的计算提供了物理模拟的增强。

Multiphysics phenomena, the coupling effects involving different aspects of physics laws, are pervasive in the real world and can often be encountered when performing everyday household tasks. Intelligent agents which seek to assist or replace human laborers will need to learn to cope with such phenomena in household task settings. To equip the agents with such kind of abilities, the research community needs a simulation environment, which will have the capability to serve as the testbed for the training process of these intelligent agents, to have the ability to support multiphysics coupling effects. Though many mature simulation software for multiphysics simulation have been adopted in industrial production, such techniques have not been applied to robot learning or embodied AI research. To bridge the gap, we propose a novel simulation environment named RFUniverse. This simulator can not only compute rigid and multi-body dynamics, but also multiphysics coupling effects commonly observed in daily life, such as air-solid interaction, fluid-solid interaction, and heat transfer. Because of the unique multiphysics capacities of this simulator, we can benchmark tasks that involve complex dynamics due to multiphysics coupling effects in a simulation environment before deploying to the real world. RFUniverse provides multiple interfaces to let the users interact with the virtual world in various ways, which is helpful and essential for learning, planning, and control. We benchmark three tasks with reinforcement learning, including food cutting, water pushing, and towel catching. We also evaluate butter pushing with a classic planning-control paradigm. This simulator offers an enhancement of physics simulation in terms of the computation of multiphysics coupling effects.

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