Mathematical Model and Solution for Land-Use Crop Planning with Cooperative Work

Senlin Guan, T. Shikanai, Morikazu Nakamura, K. Fukami
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引用次数: 1

Abstract

Most farm work planning for land-use crops such as sugarcane belongs to flexible flow shop scheduling if neglecting cooperative work and other specific constraints. Because the conventional approaches to the flexible flow shop scheduling cannot formulate these specific constraints, we require a new approach for solving land-use crop planning problems that considers cooperative work. This paper describes a detailed mathematical model and a hybrid algorithm for solving the model, in which many practical constraints are taken into account, including cooperative work, optimum time windows, waiting time between operations, and moving time. The hybrid algorithm uses meta-heuristic simulated annealing and a mixed integer programming solver in Gurobi. In order to obtain good schedules in a reasonable time, we adopt a strategy of fixing partial work sequences in the simulated annealing procedure and optimizing the partial schedule using the solver. The results of the evaluation computation show that the proposed model is operative for the practical constraints, and that the hybrid algorithm is adaptable to scheduling computation. The strategy of fixing partial work sequences is applicable to reducing computation times for large-sized land-use crop planning problems.
协同工作下土地利用作物规划的数学模型与求解
甘蔗等土地利用作物的农活规划在忽略协同作业等具体约束条件下,大多属于柔性流水车间调度。由于传统的柔性流水车间调度方法无法制定这些具体的约束条件,我们需要一种新的方法来解决考虑协同工作的土地利用作物规划问题。本文描述了一个详细的数学模型和求解该模型的混合算法,该模型考虑了许多实际约束,包括协同工作、最优时间窗、操作间等待时间和移动时间。混合算法采用元启发式模拟退火和混合整数规划求解器。为了在合理的时间内获得较好的调度,我们采用了在模拟退火过程中固定部分工作序列并利用求解器对部分调度进行优化的策略。评估计算结果表明,该模型对实际约束条件是有效的,混合算法对调度计算具有较强的适应性。固定部分工作序列策略适用于减少大规模土地利用作物规划问题的计算量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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