Hybrid dynamic programming with bounding algorithm for the multi-profit orienteering problem

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8
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10

초록

The multi-profit orienteering problem (MPOP), a variant of the orienteering problem, was introduced in 2020. In MPOP, each vertex has multiple profits, and a profit is determined by the time of visit. Therefore, the vertices to visit as well as the visit sequence and visit times must be optimally selected. The purpose of MPOP is to maximize the total profits collected from the vertices while satisfying the travel time limit constraint. To date, no exact algorithm has been developed for MPOP. This paper proposes a dynamic programming (DP)-based exact algorithm for MPOP for the first time. The proposed algorithm combines DP, ng-route relaxed DP, incumbent solution generation algorithms, and bounding rules. The proposed algorithm can obtain the optimal solutions for 33 previously unsolved benchmark instances and update the best solutions in 23 benchmark instances for MPOP. © 2022 Elsevier B.V.

키워드

BoundingDynamic programmingExact approachMulti-profit orienteering problemTIME WINDOWSRELAXATIONSTRATEGIESHEURISTICS
제목
Hybrid dynamic programming with bounding algorithm for the multi-profit orienteering problem
저자
Kim, HyunjoonKim, Byung-In Send mail to Kim B.-I.
DOI
10.1016/j.ejor.2022.02.045
발행일
2022-12
유형
정기학술지(Article(Perspective Article포함))
저널명
European Journal of Operational Research
303
2
페이지
550 ~ 566