Speed Planning in Dynamic Environments over a Fixed Path for Autonomous Vehicles

Wenda Xu, J. Dolan
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引用次数: 4

Abstract

In this paper, we present a novel convex optimization approach to address the minimum-time speed planning problem over a fixed path with dynamic obstacle constraints and point-wise speed and acceleration constraints. The contributions of this paper are three-fold. First, we formulate the speed planning as an iterative convex optimization problem based on space discretization. Our formulation allows imposing dynamic obstacle constraints and point-wise speed and acceleration constraints simultaneously. Second, we propose a modified vertical cell decomposition method to handle dynamic obstacles. It divides the freespace into channels, where each channel represents a homotopy of free paths and defines convex constraints for dynamic obstacles. Third, we demonstrate significant improvement over previous work on speed planning for typical driving scenarios such as following, merging, and crossing.
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自动驾驶汽车固定路径动态环境下的速度规划
在本文中,我们提出了一种新的凸优化方法来解决具有动态障碍物约束和点方向速度和加速度约束的固定路径上的最小时间速度规划问题。本文的贡献有三个方面。首先,我们将速度规划表述为基于空间离散化的迭代凸优化问题。我们的公式允许同时施加动态障碍约束和逐点速度和加速度约束。其次,我们提出了一种改进的垂直单元分解方法来处理动态障碍物。它将自由空间划分为通道,其中每个通道表示自由路径的同伦,并定义动态障碍物的凸约束。第三,我们在典型驾驶场景(如跟随、合并和穿越)的速度规划方面取得了显著进步。
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