Haeufle Daniel F B, Bäuerle Tobias, Steiner Jakob, Bremicker Lena, Schmitt Syn, Bechinger Clemens
Stuttgart Research Center for Simulation Technology, Pfaffenwaldring 5a, Universität Stuttgart, 70569 Stuttgart, Germany.
Institut für Sport- und Bewegungswissenschaft, Allmandring 28, Universität Stuttgart, 70569 Stuttgart, Germany.
Phys Rev E. 2016 Jul;94(1-1):012617. doi: 10.1103/PhysRevE.94.012617. Epub 2016 Jul 22.
We experimentally and numerically study the dependence of different navigation strategies regarding the effectivity of an active particle to reach a predefined target area. As the only control parameter, we vary the particle's propulsion velocity depending on its position and orientation relative to the target site. By introducing different figures of merit, e.g., the time to target or the total consumed propulsion energy, we are able to quantify and compare the efficiency of different strategies. Our results suggest that each strategy to navigate towards a target has its strengths and weaknesses, and none of them outperforms the other in all regards. Accordingly, the choice of an ideal navigation strategy will strongly depend on the specific conditions and the figure of merit which should be optimized.
我们通过实验和数值模拟研究了不同导航策略对活性粒子到达预定义目标区域有效性的依赖性。作为唯一的控制参数,我们根据粒子相对于目标位置的位置和方向来改变其推进速度。通过引入不同的品质因数,例如到达目标的时间或总消耗的推进能量,我们能够量化和比较不同策略的效率。我们的结果表明,每种朝向目标导航的策略都有其优缺点,并且在所有方面都没有一种策略优于其他策略。因此,理想导航策略的选择将强烈取决于特定条件以及应优化的品质因数。