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首页> 外文期刊>Communications in Nonlinear Science and Numerical Simulation >On non-collision flocking and line-shaped spatial configuration for a modified singular Cucker-Smale model
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On non-collision flocking and line-shaped spatial configuration for a modified singular Cucker-Smale model

机译:用于改进奇异的划线型模型的非碰撞植绒和线形空间配置

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This paper is concerned with a singular Cucker-Smale model with a general targeted pattern driving force, which ensures that the particles finally come to the desired spatial configuration. Under some suitable conditions, we prove that the exponent alpha = 1 in the communication weight leads to global regularity of solutions so that the system has an asymptotic flocking without collision between any agent. As an example, a prescribed driving force is given to demonstrate that the particles finally come to a line-shaped formation with collision avoidance, which can be viewed as a reasonable explanation for the wild geese flying in a line-shape in the sky. Moreover, this mechanism can be applied to the UAVs forming a line-shape to complete some special military missions. These results are novel, which are illustrated by both theoretical analysis and numerical simulations. (C) 2019 Published by Elsevier B.V.
机译:本文涉及具有一般有针对性的模式驱动力的奇异划线型模型,其确保粒子最终达到所需的空间配置。在一些合适的条件下,我们证明了通信重量中的指数alpha> = 1导致解决方案的全局规律性,使得系统在任何代理之间没有碰撞的渐近植入。作为一个例子,给出规定的驱动力证明颗粒最终通过碰撞避免的线状形成,这可以被视为野鹅在天空中飞行的野鹅的合理解释。此外,这种机制可以应用于形成线状以完成一些特殊军事任务的无人机。这些结果是新颖的,由理论分析和数值模拟来说明。 (c)2019年由elestvier b.v发布。

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