Torque-control based compliant actuation of a quadruped robot

Author(s):  
Michele Focchi ◽  
Thiago Boaventura ◽  
Claudio Semini ◽  
Marco Frigerio ◽  
Jonas Buchli ◽  
...  
2021 ◽  
Vol 54 (3-4) ◽  
pp. 216-230
Author(s):  
Anan Suebsomran

Control of assistive exoskeleton robot recently has to be crucial of development and innovation of medical application. To support daily motions for humans, control application of assistive exoskeleton robot allows for limb movement with increased strength and endurance during patient’s wearable exoskeleton robot application. The interaction between such exoskeleton device and the human body at the connecting joint, especially the knees, is the main interest of this design formation. The assistive device requires to design and to develop into innovation design aspect. This research presents the novel design of an active compliant actuation joint in order to increasing the higher torque of actuation than conventional actuation joint. Control design of the higher torque actuation usually difficult priori to conventional torque control. This will contributed to applying the supervisory control for compliant actuation that verified by experiment method. Then the hybrid Radial Basis Function neural network (RBFNN) and PID were proposed for actuating torque control methods. Experimental results show that the design of supervisory control is get better response, and higher producing torque output than the conventional design. Error of torque control of compliant actuation is not instead of [Formula: see text] N·m for applying supervisory control, RBFNN with PID controller. Indeed, the low electromagnetic interference (EMI) positioning system using LED and photodiode detector is proposed to be usable in medical application.


2015 ◽  
Vol 8 (5) ◽  
pp. 383-390
Author(s):  
Junpeng Shao ◽  
Xiaoning Mu ◽  
Guitao Sun ◽  
Weiyu Yang

Author(s):  
Zhu Rui ◽  
Yang Qingjun ◽  
Chen Chen ◽  
Jiang Chunli ◽  
Li Congfei ◽  
...  

The hydraulically driven quadruped robot has received extensive attention from many scholars due to its high power density and adaptability to unstructured terrain. However, the research on hydraulic quadruped robots based on torque control is not mature enough, especially in the aspect of multi-rigid body dynamics. In this paper, the most commonly used gait trot is selected as the research object. First, the multi-rigid motion equation of the quadruped robot is established by the spin recursion method based on Lie groups. Next, the Lagrange multiplier is used to represent the constraint force to establish the 12-degree-of-freedom inverse dynamics model of the quadruped robot’s stance phase. And the hybrid dynamics method is used to reduce the dimension of the inversion matrix, which simplifies the solution process of the dynamics model. Then, the trajectory of the foot is planned. Through the analysis of the simplified model, it is concluded that the gait cycle and the initial position of the stance phase are important factors affecting the stability of the trot gait. Finally, the controller framework of the quadruped robot is introduced, and the effectiveness of the algorithm designed in this paper is verified through the co-simulation of the trot gait. The co-simulation results show that the inverse dynamics algorithm can be used as the feedforward of the control system, which can greatly reduce the gains of the PD controller; the robot has good compliance and can achieve stable trotting.


Author(s):  
Thiago Boaventura ◽  
Claudio Semini ◽  
Jonas Buchli ◽  
Marco Frigerio ◽  
Michele Focchi ◽  
...  

SIGMA TEKNIKA ◽  
2019 ◽  
Vol 2 (1) ◽  
pp. 20
Author(s):  
Endang Susanti
Keyword(s):  

Robot adalah alat mekanik yang dapat melakukan tugas fisik baik melalui kontrol manusia maupun secara otomatis.. Salah satu contoh yaitu robot quadruped. Robot quadruped merupakan robot yang menirukan anatomi dari laba-laba dalam proses geraknya. Pada perancangan robot quadruped menggunakan module bluetooth hc 05 sebagai pengontrol geraknya yang disingkronkan dengan smartphone sebagai remote controlnya. Robot quadruped juga ditambahkan pengaman berupa sensor utrasonik apabila terputusnya koneksi smarphone dengan robot quadruped, sensor utrasonik mengambil peranan untuk menghindari halagan agar tidak terjadi kerusakan pada robot. Jarak maksimal dari module Bluetooth 10 meter, kettika lebih dari 10 meter, koneksi akan terputus dan tidak dapat tekoneksi kembali Kata kunci: Teknologi, robot, quadruped, module bluetooth, sensor ultrasonik.


2016 ◽  
Vol 22 (98) ◽  
pp. 56-61
Author(s):  
Vladislav A. Kosenko ◽  
◽  
Valeriy O. Kvashnin ◽  

Sign in / Sign up

Export Citation Format

Share Document