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Multi-stage farm management optimization under environmental and crop rotation constraints

机译:环境和作物轮作约束下的多阶段农场管理优化

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摘要

This paper presents a novel multi-stage optimization model for farm management during a certain planning time horizon. The salient features of this optimization model are the proper incorporation of crop rotation schemes and the consideration of crop impacts on the environment via linear environmental constraints. This decision support tool produces an optimal crop rotation plan (i.e. which crop to cultivate each year and their area) which maximizes farmer' profit while satisfying specified environmental constraints and crop rotation schemes requirements. The optimization model is formulated as a mixed-integer linear programming (MILP) problem for which sound and powerful solvers exist. The paper thoroughly investigates the impact of various types of environmental constraints, which aim at maintaining the environmental impacts of farm attivities below specified levels either overall, i.e. over the entire planning horizon, or tight, i.e. after each crop rotation. The environmental constraints are derived by adopting a Life Cycle Assessment (LCA) approach. The proposed approach is illustrated, without loss of generality, using agriculture system data specific to Luxembourg. The impact of a variety of environmental constraints, including greenhouse gas emissions and European Union (EU) common agricultural policy (CAP), is discussed. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文提出了一个新的多阶段优化模型,用于在一定规划时间范围内的农场管理。该优化模型的显着特征是适当地结合了作物轮作方案,并考虑了作物通过线性环境约束对环境的影响。该决策支持工具可制定最佳的轮作计划(即每年种植哪种农作物及其面积),从而在满足特定的环境约束和轮作方案要求的同时,最大化农民的利润。优化模型被公式化为一个混合整数线性规划(MILP)问题,对于该问题存在健全而强大的求解器。本文彻底研究了各种类型的环境约束的影响,旨在将农场活动的环境影响总体上(即在整个规划范围内)保持在规定水平以下,或者在每次作物轮换后保持在规定水平以下。环境约束是通过采用生命周期评估(LCA)方法得出的。在不失一般性的情况下,使用卢森堡特有的农业系统数据对提出的方法进行了说明。讨论了各种环境限制的影响,包括温室气体排放和欧盟(EU)共同农业政策(CAP)。 (C)2017 Elsevier Ltd.保留所有权利。

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