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121.
122.
Modeling and control for cooperative transport of a slung fluid container using quadrotors 总被引:3,自引:3,他引:0
In this paper, dynamic modeling and control problem for transfer of a sloshing liquid container suspended through rigid massless links from a team of quadrotors are investigated. By the proposed solution, pose of the slung container and fluid sloshing modes are stabilized appropriately. Dynamics of the container-liquid-quadrotors system is modeled by Euler-Lagrange method. Fluid slosh dynamics is included using multi-mass-spring model. According to derived model, a proper control law is designed for a system with three or more quadrotors. Implementing the proposed control law, quadrotors can control pose of the container, directions of the links and liquid sloshing modes simultaneously. Stability of closed loop system of tracking errors and sloshing modes are demonstrated using a theory of singularly perturbed systems and Lyapunov stability theorem. Also, the capability of the proposed feedback control laws in solving a formerly organized transport problem of a liquid filled container has been demonstrated in simulations. Moreover, priority of the proposed control scheme to an existing slung load controller in the literature is demonstrated. 相似文献
123.
鞠文煜 《民用飞机设计与研究》2018,(3)
基于模型的系统工程与传统系统工程相比,有着形象化、具体化、沟通效率高等多种优势。基于系统建模(System Modeling Language,简称SysML)语言进行建模用途广泛,但是通过实践,针对系统架构和系统运行场景分析,基于Sys ML的建模方法特点并不突出。而Arcadia的基于模型系统工程建模有着简单、清晰等特点,对于系统架构和系统定义均有着Sys ML所不具备的特点。通过系统设计的目标与特点,对基于Sys ML的建模方法和Arcadia方法进行比较研究和实践,总结两种方法在基于模型的系统工程领域中的优劣。 相似文献
124.
Modeling and experimental validation of sawing based lander anchoring and sampling methods for asteroid exploration 总被引:1,自引:0,他引:1
Jun Zhang Chengcheng Dong Hui Zhang Song Li Aiguo Song 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2018,61(9):2426-2443
This paper presents a novel lander anchoring system based on sawing method for asteroid exploration. The system is composed of three robotic arms, three cutting discs, and a control system. The discs mounted at the end of the arms are able to penetrate into the rock surface of asteroids. After the discs cut into the rock surface, the self-locking function of the arms provides forces to fix the lander on the surface. Modeling, trajectory planning, simulations, mechanism design, and prototype fabrication of the anchoring system are discussed, respectively. The performances of the system are tested on different kinds of rocks, at different sawing angles, locations, and speeds. Results show that the system can cut 15?mm deep into granite rock in 180?s at sawing angle of 60°, with the average power of 58.41?W, and the “weight on bit” (WOB) of 8.637?N. The 7.8?kg anchoring system is capable of providing omni-directional anchoring forces, at least 225?N normal and 157?N tangent to the surface of the rock. The system has the advantages of low-weight, low energy consumption and balance forces, high anchoring efficiency and reliability, and could enable the lander to move and sample or assist astronauts and robots in walking and sampling on asteroids. 相似文献
125.
基于Udwadia-Kalaba方程建立了双腔体吸附、轮式移动爬壁机器人的解析动力学模型。将系统的预定轨迹视为系统的约束关系,巧妙地将其融合到爬壁机器人动力学建模过程中;在不出现拉格朗日乘子的条件下,获得了满足约束所需附加力矩的解析表达式及系统的解析动力学方程;采用Baumgarte约束违约稳定法抑制了由于初始条件与约束方程不相容而导致的约束违约现象。爬壁机器人的广义坐标变量变化规律和运行轨迹的数值仿真结果证明了本文建模方法的可行性和有效性。 相似文献