Functional Materials Division, Materials and Manufacturing Directorate, Air Force Research Laboratory, Wright-Patterson Air Force Base, OH 45433.
UES, Inc., Dayton, OH 45432.
Proc Natl Acad Sci U S A. 2018 Jul 3;115(27):6916-6921. doi: 10.1073/pnas.1805122115. Epub 2018 Jun 18.
Robots autonomously interact with their environment through a continual sense-decide-respond control loop. Most commonly, the decide step occurs in a central processing unit; however, the stiffness mismatch between rigid electronics and the compliant bodies of soft robots can impede integration of these systems. We develop a framework for programmable mechanical computation embedded into the structure of soft robots that can augment conventional digital electronic control schemes. Using an origami waterbomb as an experimental platform, we demonstrate a 1-bit mechanical storage device that writes, erases, and rewrites itself in response to a time-varying environmental signal. Further, we show that mechanical coupling between connected origami units can be used to program the behavior of a mechanical bit, produce logic gates such as AND, OR, and three input majority gates, and transmit signals between mechanologic gates. Embedded mechanologic provides a route to add autonomy and intelligence in soft robots and machines.
机器人通过持续的感知-决策-响应控制回路自主与环境交互。最常见的情况是,决策步骤发生在中央处理单元中;然而,刚性电子设备和软机器人的柔顺体之间的刚度不匹配会阻碍这些系统的集成。我们开发了一个框架,用于将可编程机械计算嵌入到软机器人的结构中,以增强传统的数字电子控制方案。我们使用折纸水炸弹作为实验平台,展示了一种 1 位机械存储设备,它可以根据时变环境信号进行写入、擦除和重写。此外,我们还表明,连接的折纸单元之间的机械耦合可用于编程机械位的行为,生成逻辑门,如 AND、OR 和三输入多数门,并在机械逻辑门之间传输信号。嵌入式机械学为软机器人和机器添加自主性和智能提供了一种途径。