1)bionic robot fish仿生机器鱼
1.Real-time obstacle-avoidance synthesized method for bionic robot fish based on visual information;一种基于视觉的仿生机器鱼实时避障综合方法
2.Mechanics Analysis and Numerical Simulation of the Bionic Robot Fish Controlled by the GMMA超磁仿生机器鱼力学机理及数值模拟
3.The power supply management expert system is applied on the platform of SPC3-UUV bionic robot fish,whose experimental results suggest that this system operates well du.将动力电源管理专家系统应用在SPC3-UUV仿生机器鱼平台上,试验结果表明该系统在机器鱼长航程巡游过程中运行良好,实现了电源的科学管理和实时控制,有效提高了可靠性。
英文短句/例句
1.Mechanics Analysis and Numerical Simulation of the Bionic Robot Fish Controlled by the GMMA超磁仿生机器鱼力学机理及数值模拟
2.Amphibious robofish body motion simulation and preliminary design两栖仿生机器鱼机构设计及初步运动仿真
3.Research and Design on Coordination and Control of Multiple Bio-mimetic Robot Fishes;多仿生机器鱼协调控制的研究和设计
4.Neural-Network-Based T-S Fuzzy Control of Robot Fish;仿生机器鱼的神经模糊控制应用研究
5.The Software and Hardware Design and Dynamic Research on the Robot Fish仿生机器鱼建模与软硬件实现的研究
6.Hydrodynamic Simulation and Analysis of Yawing of Bionic Robot Fish仿生机器鱼艏向摆动动力学仿真及分析
7.On 3D Simulation and Cooperation Strategy of Bio-mimetic Robotic Fish;仿生机器鱼三维仿真和协作策略的研究
8.Kinematic Mechanism Research on the Swimming and Maneuvering of Robot Fish;仿生机器鱼巡游和机动的运动机理研究
9.Mechanism Design of a Multi-mode Biomimetic Amphibious Robofish两栖仿生机器鱼Ⅰ的建模及推进机构设计
10.Research on Kinematics & Dynamics Analysis and Control System for a Robofish;一种仿生机器鱼的运动分析及其控制系统研究
11.On Vision System of Bio-mimetic Robotic Fish Based on Embedded System;基于嵌入式的仿生机器鱼视觉系统研究
12.Control System Design and Experimental Study on Fish-Like Robot;仿生机器鱼的控制系统设计与实验研究
13.Research and Design of Robot Fish Tail Fin Propulsion System仿生机器鱼尾鳍推进系统的研究与设计
14.Research on a Bionic Robot Fish with Joint Style Based on Intelligent Materials基于智能材料的关节型仿生机器鱼的研究
15.Design of the control system of a new biomimetic microrobot fish一种新型微型仿生机器鱼控制系统的设计
16.Research on Turning Control of Biomimetic Robot Fish Based on Fuzzy Control基于模糊控制的仿生机器鱼转向控制研究
17.Preliminary Research on the Strategy System of the Robot Fish Water Polo Game仿生机器鱼水球比赛策略系统的初步探究
18.The Research on Self-orientation of Bio-mimetic Robot Fishes Based on Angle and Acceleration Sensors基于角度和加速度传感器的仿生机器鱼自我定位技术研究
相关短句/例句
robofish仿生机器鱼
1.Research on the control platform of underwater robofish;水下仿生机器鱼控制平台的研究
2.Control and Maneuverability of Multi-robofish;多仿生机器鱼群体定位控制
3.In this paper, based on the experimental platform of multiple mini robofish developed by the authors, a pilot study of cooperative swimming control of multi-robofish is described.在多仿生机器鱼实验平台上,针对多仿生机器鱼按次通过水中一个狭孔的问题,进行了多机器鱼协调控制的初步研究。
3)Biomimetic robot fish仿生机器鱼
1.Research evolution and analysis of biomimetic robot fish;仿生机器鱼研究的进展与分析
2.Experiment Research of Dynamic Property for Nitonial Memory Alloy and Its Application of Actuator for Biomimetic Robot Fish;NiTi记忆合金动态特性实验研究及其在仿生机器鱼上的应用
3.To the turning control problem of a kind of microminiature biomimetic robot fish,a turning control algorithm based on fuzzy control has been presented combined with the characteristic of itself locomotion.针对一类微小型仿生机器鱼的转向控制问题,结合其自身运动的特点,提出一种基于模糊控制的转向控制算法。
4)biomimetic robotic fish仿生机器鱼
1.Experimental method study on how to optimize kinematic parameters of biomimetic robotic fish;仿生机器鱼运动学参数优化选择的试验方法研究
2.CPG based motion control of biomimetic robotic fish;基于CPG模型的仿生机器鱼运动控制
3.The competition combines underwater robots with water polo game for the first time,in which biomimetic robotic fish play polo in the water.该项目首次将水下机器人和水球运动结合起来,采用仿生机器鱼在水中进行水球比赛。
5)Bio-mimetic Robotic Fish仿生机器鱼
1.On 3D Simulation and Cooperation Strategy of Bio-mimetic Robotic Fish;仿生机器鱼三维仿真和协作策略的研究
2.On Vision System of Bio-mimetic Robotic Fish Based on Embedded System;基于嵌入式的仿生机器鱼视觉系统研究
6)Robot fish仿生机器鱼
1.Robot fish’s research involves many different areas, such as mathematics,water-dynamics,bionics,artificial-intelligence,control-theory,materials,computer,mechanics,communications,sensor technology, etc.近年来,仿生机器鱼的研究成为仿生科研领域的一个研究热点。
延伸阅读
仿生复合材料分子式:CAS号:性质:参照生物材料的规律设计并制造的复合材料。天然生物材料大都为复合材料,经过亿万年的进化基本上都符合节约高效的优化原则,即以最少的材料达到最高的效能。例如,几乎所有的植物纤维细胞都是空心的、多层的,而且往往是分叉的。以CVD法制备的仿生空心石墨纤维的强度与柔韧性均较实心者为佳。按照仿竹结构提出了一种碳纤维增强树脂的优化模型。实验结果表明,仿竹材料的平均弯曲强度比具有同样数量基体和增强纤维,但分布均匀者提高81%,最优者高出103%。仿生复合材料不仅可以参照生物体的结构来设计优良的结构用材料,同时也可仿效其功能发展功能材料。
