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A hierarchical simulation-through-optimization approach to forest disturbance modelling

机译:森林干扰建模的逐级优化模拟

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We describe a stochastic-heuristic forest management model which has been adapted from a timber harvest scheduling model, to model natural disturbances based on the concept of Markov chain probabilities. Using a simulation-through-optimization approach allowed us the advantage of modelling complex disturbance problems while at the same time overcoming the extensive processing times that can be associated with conventional simulation techniques. We implemented the model for a 1.2 million ha study area in the central interior of British Columbia, parameterizing the model with historical wildfire probabilities calculated from historical spatial data. A sensitivity analysis of model parameters was carried out to evaluate the performance of disturbance model. In addition, the effects of scale on disturbance simulation were explored by modelling disturbance processes at the forest, habitat, and stand scale. The disturbance model was found to be relatively robust to changes in disturbance probabilities, but was affected by the initial landscape condition. We were able to validate the disturbance model against the results of other published papers, which indicated our model produces similar results for disturbances in the sub-boreal as other models of disturbances in the boreal forest. Using the simulation-through-optimization approach, the efficiencies inherent in heuristic optimization techniques can be used to simulate the effects of natural disturbance processes and management policies. (c) 2006 Elsevier B.V. All rights reserved.
机译:我们描述了一种随机启发式森林管理模型,该模型已从木材采伐计划模型改编而来,以基于马尔可夫链概率的概念对自然干扰进行建模。使用通过优化进行仿真的方法使我们能够对复杂的干扰问题进行建模,同时克服了传统仿真技术可能需要的大量处理时间。我们针对不列颠哥伦比亚省中部一个120万公顷研究区域实施了该模型,并使用根据历史空间数据计算出的历史野火概率对模型进行了参数化。对模型参数进行敏感性分析,以评估干扰模型的性能。此外,通过对森林,生境和林分尺度上的扰动过程进行建模,探索了尺度对扰动模拟的影响。发现扰动模型对扰动概率的变化相对鲁棒,但受初始景观条件的影响。我们能够对照其他已发表论文的结果来验证干扰模型,这表明我们的模型对北方森林的干扰产生的结果与北方森林干扰的其他模型相似。使用通过优化进行仿真的方法,启发式优化技术固有的效率可用于模拟自然干扰过程和管理策略的影响。 (c)2006 Elsevier B.V.保留所有权利。

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