Hierarchical controller for highly dynamic locomotion utilizing pattern modulation and implementation on the MIT Cheetah robot
نویسندگان
چکیده
This thesis presents a hierarchical control algorithm for quadrupedal locomotion. We address three challenges in developing a controller for high-speed running: locomotion stability, control of ground reaction force, and coordination of four limbs. To tackle these challenges, the proposed algorithm employs three strategies. Leg impedance control provides programmable virtual compliance of each leg which achieve selfstability in locomotion. The four legs exert forces to the ground using equilibriumpoint hypothesis. A gait pattern modulator imposes a desired footfall sequence. The control algorithm is verified in a dynamic simulator constructed using MATLAB and then in the subsequent experiments on the MIT Cheetah robot. The experiments on the MIT Cheetah robot demonstrates high speed trot running reaching up to the speed of 6 m/s on a treadmill. This speed corresponds to a Froude number (Fr = 7.34), which is comparatively higher than other existing quadrupedal robots. Thesis Supervisor: Sangbae Kim Title: Esther & Harold E. Edgerton Assistant Professor of Mechanical Engineering
منابع مشابه
High speed trot-running: Implementation of a hierarchical controller using proprioceptive impedance control on the MIT Cheetah
This paper presents implementation of a highly dynamic running gait with a hierarchical controller on the
متن کاملAn Adaptive Impedance Controller for Robot Manipulators
A desired dynamic behavior of constrained manipulators can be achieved by means of impedance control and various implementations of fixed controllers have been proposed. In this paper, and adaptive implementation is presented as an alternative to reduce the design sensitivity due to manipulator mismatch. The adaptive controller globally achieves the impedance objective for the nonlinear dynamic...
متن کاملBionic Control of Cheetah Bounding with a Segmented Spine
A cheetah model is built to mimic real cheetah and its mechanical and dimensional parameters are derived from the real cheetah. In particular, two joints in spine and four joints in a leg are used to realize the motion of segmented spine and segmented legs which are the key properties of the cheetah bounding. For actuating and stabilizing the bounding gait of cheetah, we present a bioinspired c...
متن کاملRaptor 2: Design of fast biped robot for 3D environments us- ing active tail stabilization
1. Motivation Legged robots will need to be fast, robust and efficient for real world applications. In this research, we aim to design a high speed bipedal running robot on 3D environments based on active tail stabilization method, Raptor 2 robot. 2. State of the Art Many legged robots have been studied and developed so far, but only a few robots have achieved stable fast legged locomotion. In ...
متن کاملDesigning and implementation of an unmanned aerial vehicle for inspection of electricity distribution networks
One of the most crucial elements of each country is electricity distribution networks (EDN). Awareness of accidents in EDN could be very important in the conservation and utilization of them. The accurate and periodic inspections can provide a good service to subscribers. The goal of this project is to fabricate a quad rotor, which can do an accurate and a periodic inspection. The design and im...
متن کامل