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Neuro-fuzzy Hybrid System for Monitoring Wood Moisture Content During Drying

机译:神经模糊混合系统,用于监测干燥期间的木材含水量

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The heterogeneous behavior of wood during drying is a process difficult to control. The objective of this study was to evaluate the accuracy of the neuro-fuzzy hybrid system for monitoring wood moisture during drying. Eucalyptus urophylla x Eucalyptus grandis samples (2 x 2 x 4 cm) were saturated and dried in climatic chamber for 15 days. Basic density was determined by the dry mass/saturated volume ratio. Two neuro-fuzzy systems were developed to monitor wood moisture, the first based on the genetic material and drying period and the second based on basic density and drying period. The drying rate of wood samples was higher at the initial period and all reached equilibrium moisture content after 15 days. Density showed relationship with wood moisture during the study period. Both systems have the potential to monitor moisture, however, neuro-fuzzy system based on basic density and drying period showed better results and is therefore more suitable.
机译:木材在干燥过程中的异质性是一个难以控制的过程。这项研究的目的是评估神经模糊混合系统在干燥过程中监测木材水分的准确性。将尾叶桉树x桉树样品(2 x 2 x 4 cm)浸透并在气候室中干燥15天。基本密度由干质量/饱和体积比确定。开发了两种神经模糊系统来监控木材的水分,第一种基于遗传物质和干燥时间,第二种基于基本密度和干燥时间。木材样品的干燥速率在开始阶段较高,并且在15天后全部达到平衡水分含量。在研究期间,密度显示出与木材水分的关系。两种系统都有监测水分的潜力,但是,基于基本密度和干燥时间的神经模糊系统显示出更好的结果,因此更适合。

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