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Consolidating Kinematic Models to Promote Coordinated Mobile Manipulations

Ziyuan Jiao, Zeyu Zhang, Xin Jiang, David Han, Song‐Chun Zhu, Yixin Zhu, Hangxin Liu

20212021 IEEE/RSJ International Conference on Intelligent Robots and Systems (IROS)19 citationsDOI

Abstract

We construct a Virtual Kinematic Chain (VKC) that readily consolidates the kinematics of the mobile base, the arm, and the object to be manipulated in mobile manipulations. Accordingly, a mobile manipulation task is represented by altering the state of the constructed VKC, which can be converted to a motion planning problem, formulated and solved by trajectory optimization. This new VKC perspective of mobile manipulation allows a service robot to (i) produce well-coordinated motions, suitable for complex household environments, and (ii) perform intricate multi-step tasks while interacting with multiple objects without an explicit definition of intermediate goals. In simulated experiments, we validate these advantages by comparing the VKC-based approach with baselines that solely optimize individual components. The results manifest that VKC-based joint modeling and planning promote task success rates and produce more efficient trajectories.

Topics & Concepts

KinematicsComputer scienceTask (project management)Construct (python library)TrajectoryPerspective (graphical)Object (grammar)Mobile robotMotion planningService (business)Artificial intelligenceComputer visionHuman–computer interactionSimulationRobotSystems engineeringEngineeringEconomicsEconomyProgramming languageClassical mechanicsPhysicsAstronomyRobot Manipulation and LearningRobotic Path Planning AlgorithmsRobotic Mechanisms and Dynamics