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Exploiting short-term memory in soft body dynamics as a computational resource

机译:利用软体动力学中的短期记忆作为计算资源

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摘要

Soft materials are not only highly deformable, but they also possess rich and diverse body dynamics. Soft body dynamics exhibit a variety of properties, including nonlinearity, elasticity and potentially infinitely many degrees of freedom. Here, we demonstrate that such soft body dynamics can be employed to conduct certain types of computation. Using body dynamics generated from a soft silicone arm, we show that they can be exploited to emulate functions that require memory and to embed robust closed-loop control into the arm. Our results suggest that soft body dynamics have a short-term memory and can serve as a computational resource. This finding paves the way towards exploiting passive body dynamics for control of a large class of underactuated systems.
机译:软材料不仅高度变形,而且还具有丰富多样的人体动力学。软体动力学具有多种特性,包括非线性,弹性和可能无限多个自由度。在这里,我们证明了这种软体动力学可用于进行某些类型的计算。使用从柔软的硅胶手臂产生的人体动力学,我们证明可以利用它们来模拟需要记忆的功能,并将强大的闭环控制嵌入手臂。我们的结果表明,软体动力学具有短期记忆,可以用作计算资源。这一发现为开发利用被动车身动力学来控制大量欠驱动系统铺平了道路。

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