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相关论文: Trajectory Control for Differential Drive Mobile M…

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We present a robot base placement and control method that enables a mobile manipulator to gracefully recover from manipulation failures while performing tasks on-the-move. A mobile manipulator in motion has a limited window to complete a…

机器人学 · 计算机科学 2023-05-16 Ben Burgess-Limerick , Chris Lehnert Jurgen Leitner , Peter Corke

We present a generalised architecture for reactive mobile manipulation while a robot's base is in motion toward the next objective in a high-level task. By performing tasks on-the-move, overall cycle time is reduced compared to methods…

机器人学 · 计算机科学 2022-12-15 Ben Burgess-Limerick , Chris Lehnert , Jurgen Leitner , Peter Corke

We present a reactive base control method that enables high performance mobile manipulation on-the-move in environments with static and dynamic obstacles. Performing manipulation tasks while the mobile base remains in motion can…

机器人学 · 计算机科学 2023-09-19 Ben Burgess-Limerick , Jesse Haviland , Chris Lehnert , Peter Corke

Mobile robots have been widely used in various aspects of human life. When a robot moves between different positions in the working area to perform the task, controlling motion to follow a pre-defined path is the primary task of a mobile…

机器人学 · 计算机科学 2022-11-11 Anh-Tu Nguyen , Van-Truong Nguyen , Xuan-Thuan Nguyen , Cong-Thanh Vu

We consider the problem of cooperative manipulation by a mobile multi-manipulator system operating in obstacle-cluttered and highly constrained environments under spatio-temporal task specifications. The task requires transporting a grasped…

机器人学 · 计算机科学 2025-12-17 Mayank Sewlia , Christos K. Verginis , Dimos V. Dimarogonas

Integrating the heterogeneous controllers of a complex mechanical system, such as a mobile manipulator, within the same structure and in a modular way is still challenging. In this work we extend our framework based on Behavior Trees for…

Mobile robots are ubiquitous. Such vehicles benefit from well-designed and calibrated control algorithms ensuring their task execution under precise uncertainty bounds. Yet, in tasks involving humans in the loop, such as elderly or mobility…

机器人学 · 计算机科学 2023-12-08 Cristian Axenie , Matteo Saveriano

This paper investigates adaptive control of nonlinear robot manipulators with parametric uncertainty. Motivated by generating closed-loop robot dynamics with enhanced transmission capability of a reference torque and with connection to…

系统与控制 · 电气工程与系统科学 2022-01-06 Hanlei Wang

In this paper, we present a planner that plans a sequence of base positions for a mobile manipulator to efficiently and robustly collect objects stored in distinct trays. We achieve high efficiency by exploring the common areas where a…

机器人学 · 计算机科学 2020-10-05 Jingren Xu , Yukiyasu Domae , Toshio Ueshiba , Weiwei Wan , Kensuke Harada

We present our general-purpose mobile manipulation system consisting of a custom robot platform and key algorithms spanning perception and planning. To extensively test the system in the wild and benchmark its performance, we choose a…

Differential drive mobile manipulators combine the mobility of wheeled bases with the manipulation capability of multi-joint arms, enabling versatile applications but posing considerable challenges for trajectory planning due to their…

机器人学 · 计算机科学 2025-11-18 Long Xu , Choilam Wong , Mengke Zhang , Junxiao Lin , Jialiang Hou , Fei Gao

This article focuses on the trajectory tracking problem of mobile manipulators (MMs). Firstly, we construct a position and orientation model predictive tracking control (POMPTC) scheme for mobile manipulators. The proposed POMPTC scheme can…

机器人学 · 计算机科学 2024-07-12 Tao Su , Shiqi Zheng

Mobile manipulators for indoor human environments can serve as versatile devices that perform a variety of tasks, yet adoption of this technology has been limited. Reducing size, weight, and cost could facilitate adoption, but risks…

机器人学 · 计算机科学 2022-10-21 Charles C. Kemp , Aaron Edsinger , Henry M. Clever , Blaine Matulevich

This work is concerned with the problem of planning trajectories and assigning tasks for a Multi-Agent System (MAS) comprised of differential drive robots. We propose a multirate hierarchical control structure that employs a planner based…

In experimental robotics, researchers may face uncertainties in parameters of a robot manipulator that they are working with. This uncertainty may be caused by deviations in the manufacturing process of a manipulator, or changes applied to…

系统与控制 · 计算机科学 2015-01-06 P. Mironchyk

Differential drive mobile robots often use one or more caster wheels for balance. Caster wheels are appreciated for their ability to turn in any direction almost on the spot, allowing the robot to do the same and thereby greatly simplifying…

机器人学 · 计算机科学 2022-04-12 Jon Arrizabalaga , Niels van Duijkeren , Markus Ryll , Ralph Lange

Recently it has been reported that range-measurement inconsistency, or equivalently mismatches in prescribed inter-agent distances, may prevent the popular gradient controllers from guiding rigid formations of mobile agents to converge to…

机器人学 · 计算机科学 2016-08-26 Hector Garcia de Marina , Bayu Jayawardhana , Ming Cao

The paper proposes a feed-forward control strategy for mobile robot control that accounts for a non-linear model of the vehicle with interaction between inputs and outputs. It is possible to include specific model uncertainties in the…

机器人学 · 计算机科学 2015-12-11 Ioan Dumitrache , Monica Dragoicea

Motion control of mobile manipulators (a robotic arm mounted on a mobile base) can be challenging for complex tasks such as material and package handling. In this paper, a task-space stabilization controller based on Nonlinear Model…

机器人学 · 计算机科学 2021-03-25 Mostafa Osman , Mohamed W. Mehrez , Shiyi Yang , Soo Jeon , William Melek

Planning a time-optimal trajectory for aerial robots is critical in many drone applications, such as rescue missions and package delivery, which have been widely researched in recent years. However, it still involves several challenges,…

机器人学 · 计算机科学 2022-09-02 Wei Luo , Jingshan Chen , Henrik Ebel , Peter Eberhard