Title :
Online motion planning for HOAP-2 humanoid robot navigation
Author :
Elmogy, Mohammed ; Habel, Christopher ; Zhang, Jianwei
Author_Institution :
Inf. Dept., Univ. of Hamburg, Hamburg, Germany
Abstract :
Autonomous robot navigation is becoming an increasingly important research topic for mobile robots. In the last few years, significant progress has been made towards stable robotic bipedal walking. This is creating an increased research interest in developing autonomous navigation strategies which are tailored specifically to humanoid robots. Efficient approaches to perception and motion planning, which are suited to the unique characteristics of biped humanoid robots and their typical operating environments, are receiving special interest. In this paper, we present a time-efficient motion planning system for a Fujitsu HOAP-2 humanoid robot. The sampling based algorithm is used to provide the robot with minimal free configuration space which is sampled to extract the robot path. For collision detection, a cylinder model is used to approximate the trajectory for the body center of the humanoid robot during navigation. It calculates the actual distances required to execute different actions of the robot and compares them with the distances to the nearest obstacles. The A* search algorithm is then implemented to find smooth and low-cost footstep placements of the humanoid robot within the resulting configuration space. The proposed hybrid algorithm reduces searching time and produces a smoother path for the humanoid robot at a low cost.
Keywords :
humanoid robots; mobile robots; path planning; autonomous navigation; bipedal walking; collision detection; humanoid robot navigation; mobile robots; online motion planning; Humanoid robots; Intelligent robots; Legged locomotion; Mobile robots; Motion planning; Navigation; Orbital robotics; Path planning; Robot sensing systems; Robotic assembly;
Conference_Titel :
Intelligent Robots and Systems, 2009. IROS 2009. IEEE/RSJ International Conference on
Conference_Location :
St. Louis, MO
Print_ISBN :
978-1-4244-3803-7
Electronic_ISBN :
978-1-4244-3804-4
DOI :
10.1109/IROS.2009.5354572