An index policy for routing agricultural machinery repairs
Production and Operations Management
- 주제설비 유지보수 최적화 · 생산·최적화
- 방법
- 현상
We study dynamic routing in an agricultural machinery repair network where mobile repair teams travel to spatially dispersed breakdowns and both travel and on-site repair times are stochastic and comparable. We formulate a finite-horizon Markov decision process tracking each team’s job list and service path, and derive a tractable index-based policy via Whittle-style Lagrangian relaxation that decomposes the original problem into team-wise subproblems. For each team, we obtain a closed-form index, prove indexability, and show that indices preserve their cross-team ordering under finite horizons, ensuring consistent decision rules without additional computation. On the analytical side, the Lagrangian dual yields a computable lower bound against which the index policy is asymptotically optimal. A case study and extensive experiments demonstrate that the index policy achieves the lowest average cost in most tested instances, with an average optimality gap of 1.72% and up to 67% cost reduction over heuristic benchmarks. Sensitivity analysis further confirm robustness under varying system loads, service imbalance, spatial distributions, and other extensions.
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- 저널Production and Operations Management
- 토픽Vehicle Routing Optimization Methods · Industrial and Manufacturing Engineering
- DOI10.1177/10591478261476256
- 저자Yipu Yao, Li Ding, Yanlu Zhao