首页 /研究 /Natural dynamics modification for energy efficiency: A data-driven parallel compliance design method
LOCOMOTION

Natural dynamics modification for energy efficiency: A data-driven parallel compliance design method

Mahdi Khoramshahi, Atoosa Parsa, Auke Jan Ijspeert, Majid Nili Ahmadabadi

发表年份
2014
引用次数
24

摘要

We present a data-driven method for designing parallel compliance. Designing such compliance helps the system to improve energy efficiency, mainly by reducing negative work. The core idea is to design a controller first and then find springs working in parallel with each actuator such that force-displacement graph is lined up around displacement axis. By doing so, we simply shape the natural dynamics for performing the task efficiently. Maximum torque reduction for actuators is a byproduct of this design method. The method can be used in different cyclic robotic application, especially in legged locomotion systems. In this paper, we design a spinal compliance for a bounding quadruped robot in Webots. The results show that the power consumption and the maximum torque are reduced significantly.

关键词

ActuatorControl theory (sociology)TorqueComputer scienceEfficient energy useEnergy consumptionWork (physics)Bounding overwatchRobotController (irrigation)

相关论文

查看 LOCOMOTION 分类全部论文