论文标题

行为设计的优化面料

Optimization Fabrics for Behavioral Design

论文作者

Ratliff, Nathan D., Van Wyk, Karl, Xie, Mandy, Li, Anqi, Rana, Muhammad Asif

论文摘要

通过操作空间控制说明的可证明的反应性行为设计的一种常见方法是将问题减少到虚拟经典机械系统(能量塑造)的设计。该框架被广泛使用,通过它,我们获得了稳定性,但以表达性的代价。这项工作提出了一个全面的理论框架,扩大了这种方法,表明有更大类别的微分方程概括了经典的机械系统(以及更广泛的拉格朗日系统),并大大扩展了它们的表现力,同时保持相同的管理稳定性原则。框架的核心是我们称之为织物的一类微分方程,构成了一种行为媒介,我们可以在其中优化潜在的功能。这些织物在优化过程中塑造了系统的行为,但仍然始终可以融合到局部最低限度,使其成为稳定行为设计的基础。我们在此处建立了框架的理论基础,并提供了一类实用的几何织物的简单经验演示,这些几何织物还具有自然的几何路径一致性,从而使它们方便灵活而直观的行为设计。

A common approach to the provably stable design of reactive behavior, exemplified by operational space control, is to reduce the problem to the design of virtual classical mechanical systems (energy shaping). This framework is widely used, and through it we gain stability, but at the price of expressivity. This work presents a comprehensive theoretical framework expanding this approach showing that there is a much larger class of differential equations generalizing classical mechanical systems (and the broader class of Lagrangian systems) and greatly expanding their expressivity while maintaining the same governing stability principles. At the core of our framework is a class of differential equations we call fabrics which constitute a behavioral medium across which we can optimize a potential function. These fabrics shape the system's behavior during optimization but still always provably converge to a local minimum, making them a building block of stable behavioral design. We build the theoretical foundations of our framework here and provide a simple empirical demonstration of a practical class of geometric fabrics, which additionally exhibit a natural geometric path consistency making them convenient for flexible and intuitive behavioral design.

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