单电机驱动柔性梁实现软体机器人波浪运动
Single Actuator Undulation Soft-bodied Robots Using A Precompressed Variable Thickness Flexible Beam
- 仅用一个直流电机通过肌腱缠绕控制预压变厚度梁
- 预张力调节可生成沿机体传播的机械波,实现波浪前进
- 结构简单重量轻,适合对轻量化有要求的软体机器人
软体机器人因其本体固有的柔韧性,能够自适应地在非结构化环境中移动。其中最常见的运动方式之一是波浪运动,其形态类似于蛇、鳗鱼和秀丽隐杆线虫的移动方式。传统上,实现波浪运动需多个执行器分别控制身体各段,但额外的执行器会增加重量,限制导航性能。本文提出一种仅需一个执行器(直流电机)的肌腱驱动柔性梁结构,可通过预压缩梁体(通过缩短两端肌腱长度形成S形)并由电机交替缠绕与松开肌腱,使柔性梁产生沿体长传播的机械行波,从而支持波浪式运动。实验中测试了不同预张力条件,分析了肌腱预张力与电机缠绕/释放之间的关系。该方案实现了软体机器人波浪运动的简洁高效实现。
原文摘要 · Abstract (English)
Soft robots - due to their intrinsic flexibility of the body - can adaptively navigate unstructured environments. One of the most popular locomotion gaits that has been implemented in soft robots is undulation. The undulation motion in soft robots resembles the locomotion gait of stringy creatures such as snakes, eels, and C. Elegans. Typically, the implementation of undulation locomotion on a soft robot requires many actuators to control each segment of the stringy body. The added weight of multiple actuators limits the navigating performance of soft-bodied robots. In this paper, we propose a simple tendon-driven flexible beam with only one actuator (a DC motor) that can generate a mechanical traveling wave along the beam to support the undulation locomotion of soft robots. The beam will be precompressed along its axis by shortening the length of the two tendons to form an S-shape, thus pretensioning the tendons. The motor will wind and unwind the tendons to deform the flexible beam and generate traveling waves along the body of the robot. We experiment with different pre-tension to characterize the relationship between tendon pre-tension forces and the DC-motor winding/unwinding. Our proposal enables a simple implementation of undulation motion to support the locomotion of soft-bodied robots.
Thank you to arXiv for use of its open access interoperability. PaperDance 不是 arXiv 官方产品;中文卡片由大模型生成,请以原文为准。