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Evaluating the required scenario set size for stochastic programming in forest management planning: incorporating inventory and growth model uncertainty

机译:评估森林管理规划中随机规划所需的方案集大小:合并清单和增长模型的不确定性

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摘要

Developing a plan of action for the future use of forest resources requires a way to predict the development of the forest through time. These predictions require the use of inventory data and growth models that contain a large number of uncertainties. These uncertainties impact the quality of the predictions, and if not accounted for, they can lead to the selection of a suboptimal management plan. To account for and manage the uncertainties and associated risk, we have explored the use of stochastic programming. Stochastic programming can integrate uncertainty into the optimization process by solving the problem for a large number of potential scenarios of the forests future development. The selection of an appropriately sized set of scenarios involves a trade-off between tractability issues and problem representation issues. In this paper, an analysis of the trade-offs is conducted. Two cases are studied, one in which only the uncertainty of the inventory data is included and a second in which both growth model and inventory data uncertainties are included. The impact of increasing the number of scenarios on the problem representation is examined through a simple even-flow problem.
机译:为将来森林资源的使用制定一项行动计划需要一种预测随着时间的推移森林发展的方法。这些预测要求使用包含大量不确定性的库存数据和增长模型。这些不确定性会影响预测的质量,如果不加以考虑,则会导致选择次优的管理计划。为了解决和管理不确定性及相关风险,我们探索了随机编程的用法。随机规划可以通过解决森林未来发展的大量潜在方案中的问题,将不确定性纳入优化过程。选择适当大小的场景集需要在易处理性问题和问题表示问题之间进行权衡。在本文中,进行了权衡分析。研究了两种情况,一种情况仅包括库存数据的不确定性,另一种情况包括增长模型和库存数据的不确定性。通过简单的偶数流问题检查了增加方案数量对问题表示的影响。

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