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首页> 外文期刊>Canadian Journal of Forest Research >Scheduling forest core area production using mixed integer programming.
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Scheduling forest core area production using mixed integer programming.

机译:使用混合整数编程来调度林核心区域生产。

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摘要

Core area, the area of mature forest protected by a buffer area from edge effects of surrounding habitats, is an important spatial measure describing forest ecological conditions. Three alternative mixed integer programming (MIP) formulations are presented for explicitly scheduling core area production in a forest management scheduling model. Formulations utilize detailed data preprocessing that develops a set of influence zones. Each influence zone identifies an area of the forest that can produce core area. Each zone is influenced by a unique combination of management units (stands) of the forest. The assumed width of the buffer surrounding core area affects both the number of zones in the forest and the number of stands associated with each zone. Numerous test cases were applied, varying the MIP formulation used to describe core area production, the assumed buffer for core area (50 or 100 m), and the set of additional forest-wide constraints to control harvest levels and core area production levels over time. Solution times varied substantially between the alternative MIP formulations. Solution times were substantially less for the formulation that used more, but simpler, spatial constraints. Solution times for large test cases suggest that real-world applications are likely feasible.
机译:核心区域是受缓冲区影响的成熟森林区域,不受周围生境的边缘影响,是描述森林生态条件的重要空间指标。提出了三种可选的混合整数规划(MIP)公式,用于在森林管理调度模型中显式调度核心区域生产。配方利用详细的数据预处理来开发一组影响区域。每个影响区都标识了可以产生核心区域的森林区域。每个区域都受森林管理单位(林分)独特组合的影响。缓冲区围绕核心区域的假定宽度会影响森林中的区域数量以及与每个区域关联的林分数量。应用了许多测试案例,改变了用于描述核心区域生产的MIP公式,假设的核心区域缓冲(50或100 m)以及一组其他森林范围约束,以随时间控制收获水平和核心区域生产水平。替代MIP配方之间的溶解时间有很大不同。对于使用更多但更简单的空间约束的配方,求解时间大大减少。大型测试用例的解决时间表明,实际应用很可能可行。

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