Control algorithm for stable galloping of quadruped robots on irregular surfaces

  • Shin, Chang-Rok
  • Kim, Jang Seob
  • Park, Jong Hyeon
Citations

SCOPUS

1

초록

This paper proposes a control algorithm for quadruped robots moving on irregularly sloped uneven surfaces. Since the body balance of a quadruped robot is controlled by the forces acting on its feet during touchdown, the ground reaction force (GRF) is controlled for stable running. The desired GRF for each foot is generated on the basis of the desired galloping pattern; this GRF is then compared with the actual contact force. The difference between the two forces is used to modify the foot trajectory. The desired force is realized by considering a combination of the rate change of the angular and linear momenta at flight Then, the amplitude of the GRF to be applied at each foot in order to achieve the desired linear and angular momenta is determined by fuzzy logic. Dynamic simulations of galloping motion were performed using RecurDyn; these simulations show that the proposed control method can be used to achieve stable galloping for a quadruped robot on irregularly sloped uneven surfaces.

키워드

Force controlGallopingGround reaction forceLinear and angular momentaQuadruped robotContact forcesControl algorithmsControl methodsDynamic simulationGround reaction forcesIrregular surfaceLinear and angular momentaLinear momentaQuadruped RobotsUneven surfacesAlgorithmsAngular momentumComputer simulationForce controlFuzzy logicMotion controlMultipurpose robots
제목
Control algorithm for stable galloping of quadruped robots on irregular surfaces
저자
Shin, Chang-RokKim, Jang SeobPark, Jong Hyeon
DOI
10.3795/KSME-A.2010.34.6.659
발행일
2010-06
유형
Article
저널명
대한기계학회논문집 A
34
6
페이지
659 ~ 665