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Wooi Boon Goh

Possible papers associated with this exact author name in Arrow. This page groups case-insensitive exact name matches and is not a full identity disambiguation profile.

3 papers
1 author row

Possible papers

3

JAAMAS Journal 2014 Journal Article

An iterative approach for makespan-minimized multi-agent path planning in discrete space

  • Wenjie Wang
  • Wooi Boon Goh

Abstract Makespan-minimized multi-agent path planning (MAPP) seeks to minimize the time taken by the slowest of n agents to reach its destination and this is essentially a minimax-constrained optimization problem. In this work, an iterative max-min improvement (IMMI) algorithm is proposed to approximate the optimal solution of the makespan-minimized MAPP problem. At each iteration, a linear maximization problem is solved using a simplex method followed by a computationally hard MAPP minimization problem that is solved using a local search approach. To keep the local search from being trapped in an unfeasible solution, a Guided Local Search technique is proposed. Comparative results with other MAPP algorithms suggest that the proposed IMMI algorithm strikes a good tradeoff between the ability to find feasible solutions that can be traversed quickly and the computational time incurred in determining these paths.

AAMAS Conference 2013 Conference Paper

Time Optimized Multi-Agent Path Planning Using Guided Iterative Prioritized Planning

  • Wenjie Wang
  • Wooi Boon Goh

This paper proposes the guided iterative prioritized planning (GIPP) algorithm to address the problem of moving multiple mobile agents to their respective destinations in a shortest timerelated cost. Compared to other MAPP algorithms, the GIPP algorithm strikes a good balance between various performance criteria such as finding feasible solutions, completing the task promptly and low computational cost.

AAMAS Conference 2011 Conference Paper

Spatio-Temporal A* Algorithms for Offline Multiple Mobile Robot Path Planning

  • Wenjie Wang
  • Wooi Boon Goh

This paper presents an offline collision-free path planning algorithm for multiple mobile robots using a 2D spatial-time map. In this decoupled approach, a centralized planner uses a Spatio-Temporal A* algorithm to find the lowest time cost path for each robot in a sequentially order based on its assigned priority. Improvements in viable path solutions using wait time insertion and adaptive priority reassignment strategies are discussed.

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