
Eyal Shlomo Shimony
Real-time Safe Interval Path Planning
Navigation among dynamic obstacles is a fundamental task in robotics that has been modeled in various ways. In Safe Interval Path Planning, location is discretized to a grid, time is continuous, future trajectories of obstacles are assumed known, and planning takes place offline. In this work, we define the Real-time Safe Interval Path Planning problem setting, in which the agent plans online and must issue its next action within a strict time bound. Unlike in classical realtime heuristic search, the cost-to-go in Real-time Safe Interval Path Planning is a function of time rather than a scalar. We present several algorithms for this setting and prove that they learn admissible heuristics. Empirical evaluation shows that the new methods perform better than classical approaches under a variety of conditions.
| Publication language | English |
| Pages | 161-169 |
| Journal | The International Symposium on Combinatorial Search |
| Volume | 17 |
| Issue number | 1 |
| Publication status | Published - 01.01.2024 |