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September 17, 2025Proceedings of the International Conference on Automated Planning and Scheduling1 citationsOpen Access

Safe Interval Randomized Path Planning For Manipulators

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NKNuraddin KerimovAOAleksandr OneginKYKonstantin Yakovlev

Key Points

  • The SI-RRT planner significantly reduces runtime and solution cost for high DoF manipulators in 3D environments with dynamic obstacles.
  • Utilizing bidirectional rapidly-exploring random trees allows SI-RRT to navigate complex paths quickly, outperforming traditional methods.
  • Safe-interval path planning enhances route safety while considering time constraints, crucial for effective manipulation in real-world applications.
  • SI-RRT combines advanced computational techniques and efficient algorithms to address challenges in robotic path planning successfully.

Abstract

Planning safe paths in 3D workspace for high DoF robotic systems, such as manipulators, is a challenging problem, especially when the environment is populated with the dynamic obstacles that need to be avoided. In this case the time dimension should be taken into account that further increases the complexity of planning. To mitigate this issue we suggest to combine safe-interval path planning (a prominent technique in heuristic search) with the randomized planning, specifically, with the bidirectional rapidly-exploring random trees (RRT-Connect) -- a fast and efficient algorithm for high-dimensional planning. Leveraging a dedicated technique of fast computation of the safe intervals, we end up with an efficient planner dubbed SI-RRT. We compare it with the state of the art and show that SI-RRT consistently outperforms the competitors both in runtime and solution cost.

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Cite This Study

Kerimov et al. (2025) studied this question.

synapsesocial.com/papers/68d4566c31b076d99fa5bb04https://doi.org/10.1609/icaps.v35i1.36120
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