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Multirate Solver with Speed and Gap Control

机译:具有速度和间隙控制的多型求解器

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摘要

— Computer simulation of vehicular traffic on the real road network can be used to solve a whole range of relevant and practical problems. The microscopic approach and tens of thousands of vehicles used in simulation lead to large systems of ordinary differential equations. The vehicle dynamics can vary significantly. As a result, the corresponding systems of differential equations have a certain feature, i.e., the rate of change in unknown vector components, which in this case are the speeds of vehicles and the distances (gaps) between them, varies significantly. In this paper, we propose a multirate numerical integration scheme, in which an individual microstep is used for each component of the vector of unknowns within each macrostep. The values of the steps are determined using the obtained local error estimate of the given numerical scheme. The corresponding time-stepping strategy is obtained both for vehicle speeds and for distances between vehicles. Moreover, the multirate solver’s local error for gaps is estimated one order of accuracy higher than for speeds because drivers estimate the gap primarily rather than the speed. The developed numerical method shows a significant computational speedup in comparison with the corresponding single-rate method.
机译:- 计算机仿真实际道路网络上的车辆流量可用于解决一系列相关和实际问题。用于模拟中使用的微观方法和成千上万的车辆导致普通微分方程的大型系统。车辆动态可以显着变化。结果,差分方程的相应系统具有一定的特征,即未知向量分量的变化率,在这种情况下是车辆之间的速度和它们之间的距离(间隙),显着变化。在本文中,我们提出了一种多型数值积分方案,其中单个MicroStep用于每个MacOSTEP内未知数的矢量的每个组件。使用所获得的数值方案的局部误差估计来确定步骤的值。对车辆速度和车辆之间的距离来获得相应的时间步进策略。此外,多型求解器的局部误差估计比速度高一阶,因为驱动程序主要估计间隙而不是速度。与相应的单速率方法相比,开发的数值方法显示了显着的计算加速。

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