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Illumination Adaptive Identification Algorithm of a Reconfigurable Modular Robot 被引量:1
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作者 Fangyi Xing Cheng Xu +1 位作者 Yanming Wu Hongwei Gao 《Instrumentation》 2024年第1期79-87,共9页
Reconfigurable modular robots feature high mobility due to their unconstrained connection manners.Inspired by the snake multi-joint crawling principle,a chain-type reconfigurable modular robot(CRMR)is designed,which c... Reconfigurable modular robots feature high mobility due to their unconstrained connection manners.Inspired by the snake multi-joint crawling principle,a chain-type reconfigurable modular robot(CRMR)is designed,which could reassemble into various configurations through the compound joint motion.Moreover,an illumination adaptive modular robot identification(IAMRI)algorithm is proposed for CRMR.At first,an adaptive threshold is applied to detect oriented FAST features in the robot image.Then,the effective detection of features in non-uniform illumination areas is achieved through an optimized quadtree decomposition method.After matching features,an improved random sample consensus algorithm is employed to eliminate the mismatched features.Finally,the reconfigurable robot module is identified effectively through the perspective transformation.Compared with ORB,MA,Y-ORB,and S-ORB algorithms,the IAMRI algorithm has an improvement of over 11.6%in feature uniformity,and 13.7%in the comprehensive indicator,respectively.The IAMRI algorithm limits the relative error within 2.5 pixels,efficiently completing the CRMR identification under complex environmental changes. 展开更多
关键词 reconfigurable modular robot visual identification feature detection feature matching
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ANALYSIS OF TIPOVER STABILITY FOR NOVEL SHAPE SHIFTING MODULAR ROBOT 被引量:10
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作者 LIU Jinguo WANG Yuechao +1 位作者 MA Shugen LI Bin 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2006年第2期181-186,共6页
A novel three-module robot has been introduced. It can change its configuration to adapt to the uneven terrain and to improve its tipover stability. This three-module tracked robot has three kinds of symmetry configur... A novel three-module robot has been introduced. It can change its configuration to adapt to the uneven terrain and to improve its tipover stability. This three-module tracked robot has three kinds of symmetry configuration. They are line type, triangle type, and row type. After the factors and the countermeasures of mobile robot's tipover problem are analyzed, stability pyramid and tipover stabil-ity index are proposed to globally determinate the mobile robot's static stability and dynamic stability. The shape shifting robot is tested by this technique under the combined disturbance of pitch, roll and yaw in simulation. The simulation result shows that this technique is effective for the analysis of mobile robot's tipover stability, especially for the reconfigurable or shape shifting modular robot. Experiments on three symmetry configurations are made under unstructured environments. The environment experiment shows the same result as that of the simulation that the triangle type configuration has the best stability. Both simulation and experiment provide a valid reference for the reconfigurable robot's potential application. 展开更多
关键词 Reconfigurable modular robot Shape shifting robot Stability pyramid Tipover stability index Unstructured environment
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Three-dimensional Construction and Omni-directional Rolling Analysis of a Novel Frame-like Lattice Modular Robot 被引量:4
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作者 DING Wan WU Jianxu YAO Yan'an 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2015年第4期691-701,共11页
Lattice modular robots possess diversity actuation methods, such as electric telescopic rod, gear rack, magnet, robot arm, etc. The researches on lattice modular robots mainly focus on their hardware descriptions and ... Lattice modular robots possess diversity actuation methods, such as electric telescopic rod, gear rack, magnet, robot arm, etc. The researches on lattice modular robots mainly focus on their hardware descriptions and reconfiguration algorithms. Meanwhile, their design architectures and actuation methods perform slow telescopic and moving speeds, relative low actuation force verse weight ratio, and without internal space to carry objects. To improve the mechanical performance and reveal the locomotion and reconfiguration binary essences of the lattice modular robots, a novel cube-shaped, frame-like, pneumatic-based reconfigurable robot module called pneumatic expandable cube(PE-Cube) is proposed. The three-dimensional(3D) expanding construction and omni-directional rolling analysis of the constructed robots are the main focuses. The PE-Cube with three degrees of freedom(Do Fs) is assembled by replacing the twelve edges of a cube with pneumatic cylinders. The proposed symmetric construction condition makes the constructed robots possess the same properties in each supporting state, and a binary control strategy cooperated with binary actuator(pneumatic cylinder) is directly adopted to control the PE-Cube. Taking an eight PE-Cube modules' construction as example, its dynamic rolling simulation, static rolling condition, and turning gait are illustrated and discussed. To testify telescopic synchronization, respond speed, locomotion feasibility, and repeatability and reliability of hardware system, an experimental pneumatic-based robotic system is built and the rolling and turning experiments of the eight PE-Cube modules' construction are carried out. As an extension, the locomotion feasibility of a thirty-two PE-Cube modules' construction is analyzed and proved, including dynamic rolling simulation, static rolling condition, and dynamic analysis in free tipping process. The proposed PE-Cube module, construction method, and locomotion analysis enrich the family of the lattice modular robot and provide the instruction to design the lattice modular robot. 展开更多
关键词 modular robot pneumatic expandable cube pneumatic actuation omni-directional rolling binary control strategy
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Center-configuration selection technique for the reconfigurable modular robot 被引量:8
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作者 LIU JinGuo WANG YueChao +2 位作者 LI Bin MA ShuGen TAN DaLong 《Science in China(Series F)》 2007年第5期697-710,共14页
The reconfigurable modular robot has an enormous amount of configurations to adapt to various environments and tasks. It greatly increases the complexity of configuration research in that the possible configuration nu... The reconfigurable modular robot has an enormous amount of configurations to adapt to various environments and tasks. It greatly increases the complexity of configuration research in that the possible configuration number of the reconfigurable modular robot grows exponentially with the increase of module number. Being the initial configuration or the basic configuration of the reconfigurable robot, the center-configuration plays a crucial role in system's actual applications. In this paper, a novel center-configuration selection technique has been proposed for re- configurable modular robots. Based on the similarities between configurations' transformation and graph theory, configuration network has been applied in the modeling and analyzing of these configurations. Configuration adjacency matrix, reconfirmation cost matrix, and center-configuration coefficient have been defined for the configuration network correspondingly. Being similar to the center-location problem, the center configuration has been selected according to the largest center-configuraUon coefficient. As an example of the reconfigurable robotic system, AMOEBA-I, a three-module reconfigurable robot with nine configurations which was developed in Shenyang Institute of Automation (SIA), Chinese Academy of Sciences (CAS), has been introduced briefly. According to the numerical simulation result, the center-configuration coefficients for these nine configurations have been calculated and compared to validate this technique. Lastly, a center-configuration selection example is provided with consideration of the adjacent configurations. The center-configuration selection technique proposed in this paper is also available to other reconfigurable modular robots. 展开更多
关键词 reconfigurable robot modular robot center-configuration configuration network reconfiguration cost matrix center-configuration coefficient
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Configuration analysis of a chain-type reconfigurable modular robot inspired by normal alkane 被引量:5
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作者 FENG JingKai LIU JinGuo 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2021年第6期1167-1176,共10页
Normal alkane is an unbranched alkane whose structural formula is H–CH2–CH2–…–CH2–…–CH2–H,which can be regarded as a reconfigurable chain-type structure composed of–CH2–modules.Inspired by normal alkane,a n... Normal alkane is an unbranched alkane whose structural formula is H–CH2–CH2–…–CH2–…–CH2–H,which can be regarded as a reconfigurable chain-type structure composed of–CH2–modules.Inspired by normal alkane,a normal-alkane-like reconfigurable modular robot (NAR) is proposed.The module consists of two differential gear trains mounted orthogonally.Each differential gear train contains two input degrees of freedom and two output degrees of freedom.Due to the genderless interface design,multiple modules can be assembled into chain-type configuration.With the genderless interfaces and flexible degrees of freedom,NAR can be reconfigured into different dimensions of spatial configuration.The bond matrix is used to describe the configuration,which represents the bond attitude of the adjacent connected modules.In addition,full interconnected geometric feature (FIGF) algorithm is proposed for non-isomorphic configuration enumeration and judgment.The configurations with three modules are simulated and the results verify the feasibility of the algorithm.Finally,a prototype with three modules is fabricated and the configuration motion sequence is demonstrated. 展开更多
关键词 reconfigurable modular robot chain-type normal alkane configuration enumeration non-isomorphic configuration
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Self-assembly control and experiments in swarm modular robots 被引量:2
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作者 WEI HongXing LI HaiYuan +1 位作者 TAN JinDong WANG TianMiao 《Science China(Technological Sciences)》 SCIE EI CAS 2012年第4期1118-1131,共14页
This paper presents a self-assembly control strategy for the swarm modular robots. Simulated and physical experiments are conducted based on the Sambot platform, which is a novel self-assembly modular robot having the... This paper presents a self-assembly control strategy for the swarm modular robots. Simulated and physical experiments are conducted based on the Sambot platform, which is a novel self-assembly modular robot having the characteristics of both the chain-type and the mobile self-reconfigurable robots. Multiple Sambots can autonomously move and connect with one another through self-assembly to form robotic organisms. The configuration connection state table is used to describe the configuration of the robotic structure. A directional self-assembly control model is proposed to perform the self-assembly experiments. The self-assembly process begins with one Sambot as the seed, and then the Docking Sambots use a behavior-based controller to achieve connection with the seed Sambot. The controller is independent of the target configuration. The seed and connected Sambots execute a configuration comparison algorithm to control the growth of the robotic structure. Furthermore, the simul- taneous self-assembly of multiple Sambots is discussed. For multiple configurations, self-assembly experiments are conducted in simulation platform and physical platform of Sambot. The experimental results verify the effectiveness and scalability of the self-assembly algorithms. 展开更多
关键词 self-reconfigurable robot modular robot swarm robot SELF-ASSEMBLY behavior-based control
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Design of a novel modular self-reconfigurable robot capable of self-turning
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作者 乔贵方 宋光明 +2 位作者 张颖 孙慧玉 韦中 《Journal of Southeast University(English Edition)》 EI CAS 2016年第3期293-300,共8页
To solve the problem of inaccurate angle adjustment in the self-assembly process, a new homogenous hybrid modular self-reconfigurable robot-Xmobot is designed. Each module has four rotary joints and a self-turning mec... To solve the problem of inaccurate angle adjustment in the self-assembly process, a new homogenous hybrid modular self-reconfigurable robot-Xmobot is designed. Each module has four rotary joints and a self-turning mechanism. With the proposed self-turning mechanism, the angle adjusting accuracy of the module is increased to 2°, and the relative position adjusting efficiency of the module in the self-assembly process is also improved. The measured maximum moving distance of the proposed module in a gait cycle is 11.0 cm. Aiming at the multiple degree of freedom (MDOF) feature of the proposed module, a motion controller based on the central pattern generator (CPG) is proposed. The control of five joints of the module only requires two CPG oscillators. The CPG-based motion controller has three basic output modes, i. e. the oscillation, the rotation, and the fixed modes. The serpentine and the wheeled movements of the H-shaped robot are simulated, respectively. The results show that the average velocities of the two movements are 15. 2 and 20. 1 m/min, respectively. The proposed CPG-based motion controller is evaluated to be effective. 展开更多
关键词 central pattern generator modular self-reconfigurable robot structural design motion simulation
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Motion simulation and experiment of a novel modular self-reconfigurable robot
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作者 吴秋轩 曹广益 费燕琼 《Journal of Southeast University(English Edition)》 EI CAS 2006年第2期185-190,共6页
Based on the character of the modular self-reconfigurable (MSR) robot, a novel homogeneous and lattice MSR robot, M-Cubes, was designed. Each module unit of the robot has 12 freedoms and is composed of six rotary jo... Based on the character of the modular self-reconfigurable (MSR) robot, a novel homogeneous and lattice MSR robot, M-Cubes, was designed. Each module unit of the robot has 12 freedoms and is composed of six rotary joints and one cubic link. An attached/detached mechanism was designed on the rotary joints. A novel space transmitting system was placed on the inner portion of the cubic link. A motor separately transmitted torque to the six joints which were distributed equally on six surfaces of the cubic link. The example of a basic motion for the module was demonstrated. The result shows that the robot is concise and compact in structure, highly efficient in transmission, credible in connecting, and simple in controlling. At the same time, a simulator is developed to graphically design the system configuration, the reconfiguration process and the motion of cluster modules. The character of local action for the cellular automata (CA) is utilized. Each module is simplified as a cell. The transition rules of the CA are developed to combine with the genetic algorithm (GA) and applied to each module to accomplish distributed control. Simulation proves that the method is effective and feasible. 展开更多
关键词 modular self-reconfigurable robot structure design motion simulation distributed control
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Task-oriented Hierarchical Control of Modular Soft Robots with External Vision Guidance
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作者 Xin Sui Tianjiao Zheng +5 位作者 Jian Qi Zhiyuan Yang Ning Zhao Jie Zhao Hegao Cai Yanhe Zhu 《Journal of Bionic Engineering》 SCIE EI CSCD 2022年第3期657-667,共11页
General,high-precision theoretical modeling method is not well developed in the field of soft robotics,which holds back motion control and practical application of soft robots.The concept of modularization brings nove... General,high-precision theoretical modeling method is not well developed in the field of soft robotics,which holds back motion control and practical application of soft robots.The concept of modularization brings novel structure,novel locomotion patterns as well as novel control method for soft robots.This paper presents the concept of hierarchical control method for modular soft robot system and a H-configuration pneumatic modular soft robot is designed as the control object.The H-configuration modular soft robot is composed of two basic motion units that take worm-like locomotion principle.The locomotion principle of the basic motion unit is analyzed and the actuation sequence is optimized by evolution strategy in VOXCAD simulation software.The differential drive method is applied to the H-configuration modular soft robot with multi motion modes and vision sensor is used to control the motion mode of the robot.The H-configuration modular soft robot and the basic motion unit are assembled by a cubic soft module made of silicone rubber.Also,connection mechanism is designed to ensure that the soft modules can be assembled in any direction and posture.Experiments are conducted to verify the effect of the hierarchical control method of the modular soft robots. 展开更多
关键词 Soft robot modular robot Locomotion pattern optimization VOXCAD simulation software Vision feedback control
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Improving the Use of Robotic Welding of Aluminum Boats through Modularization 被引量:1
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作者 Paul Kah Esa Hiltunen Jukka Martikainen 《Engineering(科研)》 2014年第1期42-49,共8页
The level of automation in the manufacture of recreational aluminum boats is very low. Robotized welding is rarely utilized, although it is commonly considered as the most effective way to reduce costs and increase co... The level of automation in the manufacture of recreational aluminum boats is very low. Robotized welding is rarely utilized, although it is commonly considered as the most effective way to reduce costs and increase competitiveness. A reason for the under-exploitation of robotics can be found in the construction of aluminum boats;boat models and their detailed structures are almost without exception individual pieces. A new stiffener structure for an aluminum recreational boat hull is developed in this work. Construction of the stiffener as a module allows exploitation of the advantages of modularization. The number of different parts is reduced and the structure simplified improves the applicability of robotic welding and provides benefits accruing from mass production. The same module can be used in several boat models. The modularity also makes it possible to use the same advanced robot welding fixture for a variety of boat models. 展开更多
关键词 modularIZATION modularITY DFMA Design for Manufacture and ASSEMBLY ALUMINUM WELDING robotic WELDING Sub-Assembly BOAT
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可穿戴式手部康复机器人设计
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作者 路光达 赵壮壮 +3 位作者 郭胜辉 刘欣霖 郭庭航 李享 《机械设计》 北大核心 2025年第10期140-149,共10页
设计了一种可穿戴式手部康复机器人(DWRH),旨在帮助脑卒中患者实现有效的手部康复训练。为保证设计合理的同时满足患者对机器人多样化功能的需求,根据手指驱动机理设计了模块化的手部驱动组件,并根据手部肌肉走向,结合对手部抓握功能的... 设计了一种可穿戴式手部康复机器人(DWRH),旨在帮助脑卒中患者实现有效的手部康复训练。为保证设计合理的同时满足患者对机器人多样化功能的需求,根据手指驱动机理设计了模块化的手部驱动组件,并根据手部肌肉走向,结合对手部抓握功能的研究,设计并优化了手部康复机器人的布线方式,最终可实现辅助手指完成2~5指的弯曲和伸展、掌指关节独立运动、大拇指独立弯曲和伸展、第1腕掌关节的内收和外展。为了验证康复机器人对手部的控制效果,通过数字图像技术对其抓握和运动过程进行分析。试验结果表明:DWRH机器人所实现的关节角度范围中5/6的关节均超过正常关节角度活动范围的71%以上,能够有效帮助手指实现关节的弯曲和伸展功能。DWRH机器人有望在患者康复训练和日常生活中发挥重要作用。 展开更多
关键词 手部康复机器人 模块化设计 柔性可穿戴 弹性传动装置
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连续体机器人通用实验平台的设计与应用 被引量:1
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作者 杜付鑫 崔维一 +1 位作者 程天宇 张钢 《实验技术与管理》 北大核心 2025年第2期37-43,共7页
现有的连续体机器人实验平台存在通用性差、功能单一和成本高昂等问题,通用平台的设计与应用可以提升实验室科研水平和教育质量。该研究设计了一款新型连续体机器人通用实验平台,具有高精度、模块化、功能多样、易于推广的特点;通过模... 现有的连续体机器人实验平台存在通用性差、功能单一和成本高昂等问题,通用平台的设计与应用可以提升实验室科研水平和教育质量。该研究设计了一款新型连续体机器人通用实验平台,具有高精度、模块化、功能多样、易于推广的特点;通过模块的组合可以实现对多段不同直径线驱动连续体的驱动;通过构建线长模型获取连续体机器人的控制参量,建立双段连续体机器人的正运动学模型;设计了一组测量连续体弯曲角度的实验,实验结果表明连续体的弯曲特性和实验平台的性能良好。连续体机器人通用实验平台的引入对提升实验室科研水平和教学质量具有重要意义,将推动连续体机器人的研究不断进步。 展开更多
关键词 连续体机器人 通用实验平台 模块化 正运动学 实验室发展
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基于模块化爬壁机器人和改进DeepLabv3+的桥墩裂缝检测研究
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作者 董绍江 尹玉柱 +1 位作者 吕振鸣 张佳伟 《重庆交通大学学报(自然科学版)》 北大核心 2025年第6期115-122,共8页
针对大型混凝土桥梁桥墩结构表面裂缝存在连续性差、背景干扰大,且一般深度学习裂缝检测模型参数量大等问题,为安全、快速、准确地检测壁面裂缝,笔者提出了一种改进的轻量化DeepLabv3+裂缝分割模型与模块化爬壁机器人相结合的检测方案... 针对大型混凝土桥梁桥墩结构表面裂缝存在连续性差、背景干扰大,且一般深度学习裂缝检测模型参数量大等问题,为安全、快速、准确地检测壁面裂缝,笔者提出了一种改进的轻量化DeepLabv3+裂缝分割模型与模块化爬壁机器人相结合的检测方案。以模块化爬壁机器人为载体,通过各模块的自组式连接实现在复杂环境的爬行驱动,搭载图像采集设备进行桥墩表观病害数据采集作业;同时基于DeepLabv3+框架,通过改进部分网络结构以及添加各检测模块构,构建一种聚合多尺度信息的轻量级检测模型,并部署至上位机系统。最终检测结果表明:笔者模型在Crack-wall裂缝数据集上平均检测精度达到86.96%,相比原模型精度提升6.26%,交并比提高8.44%,召回率提高8.76%,且模型大小仅为10.613 M,具有较高检测精度以及实时检测效果,笔者所提检测方案具有可行性并成功将其应用于实际项目中。 展开更多
关键词 桥梁工程 裂缝分割 爬壁机器人 模块化设计 多尺度 实时轻量
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基于灰狼优化算法的模块化机器人拓扑优化方法 被引量:1
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作者 刘玖庆 陈钢 +4 位作者 费军廷 余龙畅 闫英 刘育强 刘华伟 《南京航空航天大学学报(自然科学版)》 北大核心 2025年第3期419-428,共10页
模块化机器人可重构为不同的拓扑,从而具备多样的工作能力以应对复杂多变的任务需求,如何求取具备所需工作能力的机器人最优拓扑是充分发挥模块化机器人重构特性的关键。为解决这一问题,本文提出了一种基于灰狼优化算法(Grey wolf optim... 模块化机器人可重构为不同的拓扑,从而具备多样的工作能力以应对复杂多变的任务需求,如何求取具备所需工作能力的机器人最优拓扑是充分发挥模块化机器人重构特性的关键。为解决这一问题,本文提出了一种基于灰狼优化算法(Grey wolf optimizer,GWO)的模块化机器人拓扑优化方法。首先,针对模块化机器人构建运动链表征,并基于旋量法和牛顿-欧拉法完成运动学/动力学建模。然后,基于运动链表征设计拓扑决策变量,考虑机器人的模块数量、最大关节驱动力矩和灵巧性设计目标函数,引入交叉、变异概念改进灰狼优化算法,建立拓扑优化模型并求解。最后,针对两个实验求解所对应的最优拓扑,对比验证了该算法能有效求取模块化机器人最优拓扑。 展开更多
关键词 模块化机器人 拓扑表征 拓扑优化 灰狼优化算法 多目标优化
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国产模块化手术机器人系统辅助肾部分切除术的可行性和安全性分析 被引量:1
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作者 郑浩轲 于栓宝 +4 位作者 王泽远 崔金山 刘云龙 陶金 张雪培 《临床泌尿外科杂志》 2025年第1期39-42,共4页
目的:评估国产模块化海山一^(®)腔镜手术机器人辅助肾部分切除手术的有效性和安全性。方法:前瞻性纳入2024年6月—7月在郑州大学第一附属医院接受海山一^(®)腔镜手术机器人辅助肾部分切除术的10例患者,收集患者的一般情况、... 目的:评估国产模块化海山一^(®)腔镜手术机器人辅助肾部分切除手术的有效性和安全性。方法:前瞻性纳入2024年6月—7月在郑州大学第一附属医院接受海山一^(®)腔镜手术机器人辅助肾部分切除术的10例患者,收集患者的一般情况、肿瘤影像学资料、术中操作相关参数、术后病理、术中及术后并发症发生情况、术者操作的主观感受等。结果:10例患者均顺利完成手术,无中转开放或腹腔镜手术。患者年龄为(56.0±13.9)岁,体重指数为(24.8±2.4)kg/m^(2)。术前TNM分期均为T1aN0M0期,肿瘤直径为(2.0±0.9)cm,R.E.N.A.L.评分为(4.8±0.6)分。设备对接时间为(6.6±3.1)min,机械臂操作时间为(70.1±33.6)min,出血量为(57±24.5)mL,热缺血时间为(13.4±11.6)min,其中有2例患者未阻断肾动脉。术后住院时间为(6.5±1.4)d,病理切缘均为阴性,术中及术后共4例患者出现Clavien-DindoⅠ级并发症。术中操作具有很好的稳定性、灵活性及较低的延迟。结论:初步研究表明海山一^(®)腔镜手术机器人辅助肾部分切除术是安全可行的。 展开更多
关键词 模块化机器人 肾肿瘤 肾部分切除术
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小型台式点样机器人THU-Biorobot Ⅲ的研制与开发 被引量:1
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作者 宋立滨 陈恳 贾振中 《机器人》 EI CSCD 北大核心 2008年第2期187-192,共6页
介绍了小型台式点样机器人THU-Biorobot Ⅲ的功能、机械结构、控制系统以及用户软件设计.THU-Biorobot Ⅲ基于模块化思想设计,包括内嵌式环境控制模块、样品盒更换模块、点样针清洗干燥模块等.THU-Bioro-bot Ⅲ利用接触式点样来制备微... 介绍了小型台式点样机器人THU-Biorobot Ⅲ的功能、机械结构、控制系统以及用户软件设计.THU-Biorobot Ⅲ基于模块化思想设计,包括内嵌式环境控制模块、样品盒更换模块、点样针清洗干燥模块等.THU-Bioro-bot Ⅲ利用接触式点样来制备微阵列生物芯片. 展开更多
关键词 点样 机器人 模块化设计 微阵列 生物芯片
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Genetic Programming-based Self-reconfiguration Planning for Metamorphic Robot 被引量:1
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作者 Tarek Ababsa Noureddine Djedi Yves Duthen 《International Journal of Automation and computing》 EI CSCD 2018年第4期431-442,共12页
This paper presents a genetic programming based reconfiguration planner for metamorphic modular robots. Initially used for evolving computer programs that can solve simple problems, genetic programming (GP) has been... This paper presents a genetic programming based reconfiguration planner for metamorphic modular robots. Initially used for evolving computer programs that can solve simple problems, genetic programming (GP) has been recently used to handle various kinds of problems in the area of complex systems. This paper details how genetic programming can be used as an automatic programming tool for handling reconfiguration-planning problem. To do so, the GP evolves sequences of basic operations which are required for transforming the robot's geometric structure from its initial configuration into the target one while the total number of modules and their connectedness are preserved. The proposed planner is intended for both Crystalline and TeleCube modules which are achieved by cubical compressible units. The target pattern of the modular robot is expressed in quantitative terms of morphogens diffused on the environment. Our work presents a solution for self recontlguration problem with restricted and unrestricted free space available to the robot during reconfiguration, The planner outputs a near optimal explicit sequence of low-level actions that allows modules to move relative to each other in order to form the desired shape. 展开更多
关键词 modular robots unit-compressible modules SELF-RECONFIGURATION genetic programming reconfiguration planning.
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模块化气动软体爬行机器人的设计与分析
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作者 尹宏飞 吕跃东 宋晓娟 《机械传动》 北大核心 2025年第1期64-73,共10页
【目的】模块化软体机器人具备高柔韧性与理论上的无限自由度,可以适应各种复杂的环境和任务需求。为此,设计了一种仿蜂巢软体驱动单元,将多个该单元连接组成可以实现不同功能的模块化驱动软体机器人。【方法】对设计的仿蜂巢软体驱动... 【目的】模块化软体机器人具备高柔韧性与理论上的无限自由度,可以适应各种复杂的环境和任务需求。为此,设计了一种仿蜂巢软体驱动单元,将多个该单元连接组成可以实现不同功能的模块化驱动软体机器人。【方法】对设计的仿蜂巢软体驱动单元进行了材料选择与力学分析,建立了软体驱动单元内部驱动气压与变形量之间的非线性关系模型,并采用有限元仿真验证了该模型的有效性;基于仿蜂巢软体驱动单元模块,设计了伸缩型软体机器人和双向弯曲型软体机器人,并对两种构型的软体机器人进行有限元仿真;最后,进行了软体机器人的制作以及模块化驱动软体机器人的试验研究。【结果】仿真结果表明,双向弯曲型软体机器人比相同长度的伸缩型软体机器人在伸缩变形范围上更大,其承载能力较伸缩型软体机器人也更好。试验结果表明,双向弯曲型软体机器人可以实现仿蠕虫的直线爬行与转向运动。并且两种构型的软体机器人试验结果与仿真结果基本保持一致。 展开更多
关键词 模块化 气动软体机器人 非线性模型 结构仿真分析
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模块化机器人构型多目标优化设计 被引量:1
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作者 周育华 甘文峰 +3 位作者 廖昭洋 黄海滔 韦文斐 陈烽民 《机电工程技术》 2025年第4期142-145,160,共5页
为解决如何根据特定任务需求快速设计机器人的问题,提出一种性能驱动的模块化机器人构型多目标优化设计方法。以总质量、单位工作空间、全域可操作度3个性能指标为优化目标,构建模块化机器人构型的多目标优化模型。针对在构型优化问题中... 为解决如何根据特定任务需求快速设计机器人的问题,提出一种性能驱动的模块化机器人构型多目标优化设计方法。以总质量、单位工作空间、全域可操作度3个性能指标为优化目标,构建模块化机器人构型的多目标优化模型。针对在构型优化问题中,连杆尺寸选择过少的问题,对优化变量采用整数编码方案,使连杆尺寸能在范围内连续取值,将离散尺寸与连续尺寸的构型优化实例进行对比,通过计算pareto前沿中所有点的欧氏距离均值衡量解集的分散度,结果表明尺寸取值连续实例的解集分散度较取值分散的实例减少了12.89%,验证连续尺寸方案的有效性。对pareto前沿中的构型进行分析,采用皮尔森相关系数法判断各优化目标之间的相关性,结果表明单位工作空间与全域可操作度的相关性最高,达到0.701,总质量与单位工作空间的相关性仅有0.007。在MATLAB上选择解集中的两个构型进行工作空间仿真分析,仿真结果表明,在总质量相同的情况下,构型A相较于构型B的单位长度工作空间减少了12.86%,同时全域可操作度增加了5.24%,该方法设计得到的解集中的构型均能满足任务需求。 展开更多
关键词 模块化机器人 遗传算法 构型优化
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登杆作业机器人的结构设计与仿真分析
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作者 黄润 阮学云 傅军杰 《机械工程与自动化》 2025年第3期64-66,共3页
针对城市中的杆状建筑物(如路灯杆、电线杆、广告牌等)定期维护和清理主要依靠人工登杆和运输吊车作业,存在安全风险高、效率低、成本高等问题,开发了一款登杆作业机器人。基于模块化设计理念,根据登杆环境确定了机器人的主体结构,重点... 针对城市中的杆状建筑物(如路灯杆、电线杆、广告牌等)定期维护和清理主要依靠人工登杆和运输吊车作业,存在安全风险高、效率低、成本高等问题,开发了一款登杆作业机器人。基于模块化设计理念,根据登杆环境确定了机器人的主体结构,重点分析了登杆作业机器人装置的登杆可行性,并利用ANSYS对机器人进行了静力学仿真分析。 展开更多
关键词 登杆机器人 模块化 静力学仿真
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