OTHER
Coordinating the Motion of Labeled Discs with Optimality Guarantees under Extreme Density
Rupesh Chinta, Shuai D. Han, Jingjin Yu
- Year
- 2018
- Citations
- 3
- Access
- Open access
Abstract
We push the limit in planning collision-free motions for routing uniform labeled discs in two dimensions. First, from a theoretical perspective, we show that the constant-factor time-optimal routing of labeled discs can be achieved using a polynomial-time algorithm with robot density over $50\%$ in the limit (i.e., over half of the workspace may be occupied by the discs). Second, from a more practical standpoint, we provide a high performance algorithm that computes near-optimal (e.g., $1.x$) solutions under the same density setting.
Keywords
Limit (mathematics)WorkspaceRouting (electronic design automation)Constant (computer programming)Perspective (graphical)Motion (physics)Mathematical optimizationComputer scienceRobotMathematics
Related papers
OTHER
📊 26,957 cites
Statistical Learning Theory
Yuhai Wu, Vladimir Vapnik
1999
PERCEPTION
📊 22,245 cites
Artificial intelligence: a modern approach
1995
OTHER
Open access📊 20,501 cites
Fractional Differential Equations
Igor Podlubný
2025
OTHER
📊 18,993 cites
Applied Nonlinear Control
Jean-Jacques Slotine, Weiping Li
1991