论文标题
环境如何影响主动粒子群:案例研究
How environment affects active particle swarms: a case study
论文作者
论文摘要
我们在充满障碍物的环境中研究了自propeld剂的集体运动,这些障碍物通过弹簧束缚在固定位置。活性颗粒能够通过通过排斥力移动障碍物来改变环境。这会在粒子和障碍物之间产生反馈相互作用,而这些粒子出现了宽度的图案(步道,带,簇,蜂窝结构,...)。我们将重点关注[ACEVES2020]中首次引入的离散模型,并得出为Continuum PDE模型。作为第一个主要新颖性,我们对2D中离散和连续模型的模式形成进行了深入研究:我们提供相同的图形并确定使用线性稳定性分析发生分叉的关键机制。结果,我们发现,代理商的排斥力,试剂 - 奥的排斥力和障碍物的弹簧刚度是图案外观中的关键力,而粒子之间的对齐力则起次要作用。第二个主要新颖性在于开发一种创新方法,以比较我们在这里应用的离散模型和连续模型,以对离散模型和连续模型之间的一致性进行深入分析。
We investigate the collective motion of self-propelled agents in an environment filled with obstacles that are tethered to fixed positions via springs. The active particles are able to modify the environment by moving the obstacles through repulsion forces. This creates feedback interactions between the particles and the obstacles from which a breadth of patterns emerges (trails, band, clusters, honey-comb structures,...). We will focus on a discrete model first introduced in [Aceves2020] and derived into a continuum PDE model. As a first major novelty, we perform an in-depth investigation of pattern formation of the discrete and continuum models in 2D: we provide phase-diagrams and determine the key mechanisms for bifurcations to happen using linear stability analysis. As a result, we discover that the agent-agent repulsion, the agent-obstacle repulsion and the obstacle's spring stiffness are the key forces in the appearance of patterns, while alignment forces between the particles play a secondary role. The second major novelty lies in the development of an innovative methodology to compare discrete and continuum models that we apply here to perform an in-depth analysis of the agreement between the discrete and continuum models.