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Coordinating control of multiple rigid bodies based on motion primitives 被引量:1
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作者 Fan Wu Zhi-Yong Geng 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2012年第2期482-489,共8页
This paper studies the problem of coordinated motion generation for a group of rigid bodies. Two classes of coordinated motion primitives, relative equilibria and ma- neuvers, are given as building blocks for generati... This paper studies the problem of coordinated motion generation for a group of rigid bodies. Two classes of coordinated motion primitives, relative equilibria and ma- neuvers, are given as building blocks for generating coordi- nated motions. In a motion-primitive based planning frame- work, a control method is proposed for the robust execution of a coordinated motion plan in the presence of perturba- tions. The control method combines the relative equilibria stabilization with maneuver design, and results in a close- loop motion planning framework. The performance of the control method has been illustrated through a numerical sim- ulation. 展开更多
关键词 Coordinating control motion plan execution motion primitive. Relative equilibrium. Maneuver
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Human-robot collaborative handling of curtain walls using dynamic motion primitives and real-time human intention recognition
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作者 Fengming Li Huayan Sun +1 位作者 Enguang Liu Fuxin Du 《Biomimetic Intelligence & Robotics》 2024年第4期27-37,共11页
Human-robot collaboration fully leverages the strengths of both humans and robots,which is crucial for handling large,heavy objects at construction sites.To address the challenges of human-machine cooperation in handl... Human-robot collaboration fully leverages the strengths of both humans and robots,which is crucial for handling large,heavy objects at construction sites.To address the challenges of human-machine cooperation in handling large-scale,heavy objects-specifically building curtain walls-a human-robot collaboration system was designed based on the concept of"human-centered with machine support".This system allows the handling of curtain walls according to different human intentions.First,a robot trajectory learning and generalization model based on dynamic motion primitives was developed.The operator's motion intent was then characterized by their speed,force,and torque,with the force impulse introduced to define the operator's intentions for acceleration and deceleration.Finally,a collaborative experiment was conducted on an experimental platform to validate the robot's understanding of human handling intentions and to verify its ability to handle curtain wall.Collaboration between humans and robots ensured a smooth and labor-saving handling process. 展开更多
关键词 Robots Dynamic motion primitives Human-machine collaboration Curtain wall handling
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Generation and Selection of Driver-Behavior-Based Transferable MotionPrimitives
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作者 Haijie Guan Boyang Wang +3 位作者 Jiaming Wei Yaomin Lu Huiyan Chen Jianwei Gong 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2022年第1期208-222,共15页
To integrate driver experience and heterogeneous vehicle platform characteristics in a motion-planning algorithm,based on the driver-behavior-based transferable motion primitives(MPs), a general motion-planning framew... To integrate driver experience and heterogeneous vehicle platform characteristics in a motion-planning algorithm,based on the driver-behavior-based transferable motion primitives(MPs), a general motion-planning framework for offline generation and online selection of MPs is proposed. Optimal control theory is applied to solve the boundary value problems in the process of generating MPs, where the driver behaviors and the vehicle motion characteristics are integrated into the optimization in the form of constraints. Moreover, a layered, unequal-weighted MP selection framework is proposed that utilizes a combination of environmental constraints, nonholonomic vehicle constraints,trajectory smoothness, and collision risk as the single-step extension evaluation index. The library of MPs generated offline demonstrates that the proposed generation method realizes the effective expansion of MP types and achieves diverse generation of MPs with various velocity attributes and platform types. We also present how the MP selection algorithm utilizes a unique MP library to achieve online extension of MP sequences. The results show that the proposed motion-planning framework can not only improve the efficiency and rationality of the algorithm based on driving experience but can also transfer between heterogeneous vehicle platforms and highlight the unique motion characteristics of the platform. 展开更多
关键词 Autonomous vehicle motion planning motion primitives Driver behavior Heterogeneous vehicle platform
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SOME LIMINF RESULTS ON INCREMENTS OF THE PRIMITIVES OF BROWNIAN MOTION
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作者 WangWensheng 《Applied Mathematics(A Journal of Chinese Universities)》 SCIE CSCD 2000年第4期409-418,共10页
Let { W(t);t≥0 } be a standard Brownian motion.For a positive integer m ,define a Gaussian processX m(t)=1m!∫ t 0(t-s) m d W(s).In this paper the liminf behavior of the increments of this process is discu... Let { W(t);t≥0 } be a standard Brownian motion.For a positive integer m ,define a Gaussian processX m(t)=1m!∫ t 0(t-s) m d W(s).In this paper the liminf behavior of the increments of this process is discussed by establishing some probability inequalities.Some previous results are extended and improved. 展开更多
关键词 Moduli of continuity large increments primitives of Brownian motion.
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A demonstration trajectory segmentation approach for wheelchair-mounted assistive robots
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作者 Mingshan Chi Yaxin Liu +1 位作者 Qiang Zhang Chao Zeng 《CAAI Transactions on Intelligence Technology》 2025年第3期738-754,共17页
Segmentation of demonstration trajectories and learning the contained motion primitives can effectively enhance the assistive robot's intelligence to flexibly reproduce learnt tasks in an unstructured environment.... Segmentation of demonstration trajectories and learning the contained motion primitives can effectively enhance the assistive robot's intelligence to flexibly reproduce learnt tasks in an unstructured environment.With the aim to conveniently and accurately segment demonstration trajectories,a novel demonstration trajectory segmentation approach is proposed based on the beta process autoregressive hidden Markov model(BP-ARHMM)algorithm and generalised time warping(GTW)algorithm aiming to enhance the segmentation accuracy utilising acquired demonstration data.This approach first adopts the GTW algorithm to align the multiple demonstration trajectories for the same task.Then,it adopts the BP-AR-HMM algorithm to segment the demonstration trajectories,acquire the contained motion primitives,and establish the related task library.This segmentation approach is validated on the 6-degree-of-freedom JACO robotic arm by assisting users to accomplish a holding water glass task and an eating task.The experimental results show that the motion primitives within the trajectories can be correctly segmented with a high segmentation accuracy. 展开更多
关键词 assistive robots motion primitives personal care trajectory segmentation wheelchair-mounted robotic arm
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Online Observability-Constrained Motion Suggestion via Efficient Motion Primitive-Based Observability Analysis
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作者 Zheng Rong Shun'an Zhong Nathan Michael 《Journal of Beijing Institute of Technology》 EI CAS 2018年第1期92-102,共11页
An active perception methodology is proposed to locally predict the observability condition in a reasonable horizon and suggest an observability-constrained motion direction for the next step to ensure an accurate and... An active perception methodology is proposed to locally predict the observability condition in a reasonable horizon and suggest an observability-constrained motion direction for the next step to ensure an accurate and consistent state estimation performance of vision-based navigation systems. The methodology leverages an efficient EOG-based observability analysis and a motion primitive-based path sampling technique to realize the local observability prediction with a real-time performance. The observability conditions of potential motion trajectories are evaluated,and an informed motion direction is selected to ensure the observability efficiency for the state estimation system. The proposed approach is specialized to a representative optimizationbased monocular vision-based state estimation formulation and demonstrated through simulation and experiments to evaluate the ability of estimation degradation prediction and efficacy of motion direction suggestion. 展开更多
关键词 observability analysis observability prediction motion primitive motion suggestion monocular visual-inertial state estimation active perception
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Extraction of Robot Primitive Control Rules from Natural Language Instructions 被引量:1
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作者 Guang-Hong Wang Ping Jiang Zu-Ren Feng 《International Journal of Automation and computing》 EI 2006年第3期282-290,共9页
A support vector rule based method is investigated for the construction of motion controllers via natural language training. It is a two-phase process including motion control information collection from natural langu... A support vector rule based method is investigated for the construction of motion controllers via natural language training. It is a two-phase process including motion control information collection from natural language instructions, and motion information condensation with the aid of support vector machine (SVM) theory. Self-organizing fuzzy neural networks are utilized for the collection of control rules, from which support vector rules are extracted to form a final controller to achieve any given control accuracy. In this way, the number of control rules is reduced, and the structure of the controller tidied, making a controller constructed using natural language training more appropriate in practice, and providing a fundamental rule base for high-level robot behavior control. Simulations and experiments on a wheeled robot are carried out to illustrate the effectiveness of the method. 展开更多
关键词 Support vector machines (SVMs) fuzzy neural networks motion primitives motion controller language instruction based training natural language programming.
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Anticipating Degradation in State Estimation Accuracy via Online Nonlinear Observability Analysis
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作者 Zheng Rong Shun'an Zhong Nathan Michael 《Journal of Beijing Institute of Technology》 EI CAS 2017年第3期388-395,共8页
A methodology is proposed to enable real-time evaluation of the observability of local motions,and generate a local observability cost map to enable informed local motion planning in order to avoid potential degradati... A methodology is proposed to enable real-time evaluation of the observability of local motions,and generate a local observability cost map to enable informed local motion planning in order to avoid potential degradation or degeneracy in state estimator performance.The proposed approach leverages efficient numerical techniques in nonlinear observability analysis and motion primitive-based planning technique to realize the local observability prediction with real-time performance.The degradation of the state estimation performance can be readily predicted with the local observability evaluation result.The proposed approach is specialized to a representative optimization-based monocular visual-inertial state estimation formulation and evaluated through simulation and experiments.The experimental results demonstrated the ability of the proposed methodology to correctly anticipate the potential state estimation degradation. 展开更多
关键词 observability analysis anticipate degradation motion primitive monocular visual-iner-tial state estimation
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An improved path planning and tracking control method for planetary exploration rovers with traversable tolerance
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作者 Haojie Zhang Feng Jiang Qing Li 《Biomimetic Intelligence & Robotics》 2025年第2期132-145,共14页
In order to ensure the safety and efficiency of planetary exploration rovers,path planning and tracking control of a planetary rover are expected to consider factors such as complex 3D terrain features,the motion cons... In order to ensure the safety and efficiency of planetary exploration rovers,path planning and tracking control of a planetary rover are expected to consider factors such as complex 3D terrain features,the motion constraints of the rover,traversability,etc.An improved path planning and tracking control method is proposed for planetary exploration rovers on rough terrain in this paper.Firstly,the kinematic model of the planetary rover is established.A 3D motion primitives library adapted to various terrains and the rover’s orientations is generated.The state expansion process and heuristic function of the A*algorithm are improved using the motion primitives and terrain features.Global path is generated by improved A*-based algorithm that satisfies the planetary rover’s kinematic constraints and the 3D terrain restrictions.Subsequently,an optional arc path set is designed based on the traversable capabilities of the planetary rover.Each arc path corresponds to a specific motion that determines the linear and angular velocities of the planetary rover.The optimal path is selected through the multi-objective evaluation function.The planetary rover is driven to accurately track the global path by sending optimal commands that corresponds to the optimal path for real-time obstacle avoidance.Finally,the path planning and tracking control method is effectively validated during a given mission through two simulation tests.The experiment results show that the improved A*-based algorithm reduces planning time by 30.05% and generates smoother paths than the classic A^(*) algorithm.The multi-objective arc-based method improves the rover’s motion efficiency,ensuring safer and quicker mission completion along the global path. 展开更多
关键词 Planetary exploration rovers Path planning motion primitives Optional arc paths
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Decentralized MPC-Based Trajectory Generation for Multiple Quadrotors in Cluttered Environments 被引量:1
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作者 Xinyi Wang Lele Xi +3 位作者 Yizhou Chen Shupeng Lai Feng Lin Ben M.Chen 《Guidance, Navigation and Control》 2021年第2期40-59,共20页
Challenges in motion planning for multiple quadrotors in complex environments lie in overall°ight e±ciency and the avoidance of obstacles,deadlock,and collisions among themselves.In this paper,we present a g... Challenges in motion planning for multiple quadrotors in complex environments lie in overall°ight e±ciency and the avoidance of obstacles,deadlock,and collisions among themselves.In this paper,we present a gradient-free trajectory generation method for multiple quadrotors in dynamic obstacle-dense environments with the consideration of time consumption.A model predictive control(MPC)-based approach for each quadrotor is proposed to achieve distributed and asynchronous cooperative motion planning.First,the motion primitives of each quadrotor are formulated as the boundary state constrained primitives(BSCPs)which are constructed with jerk limited trajectory(JLT)generation method,a boundary value problem(BVP)solver,to obtain time-optimal trajectories.They are then approximated with a neural network(NN),pre-trained using this solver to reduce the computational burden.The NN is used for fast evaluation with the guidance of a navigation function during optimization to guarantee°ight safety without deadlock.Finally,the reference trajectories are generated using the same BVP solver.Our simulation and experimental results demonstrate the superior performance of the proposed method. 展开更多
关键词 Multi-quadrotor systems motion planning motion primitive model predictive control
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