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Energy-efficient Operation of a Medium Density Fibreboard Dryer Through Nonlinear MPC

机译:通过非线性MPC的中密度纤维板干燥器的节能操作

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Medium density fibreboard (MDF) is a popular and cheap wood-based panel for which an accurate control of the fiber humidity is key to get the desired product quality. The drying dynamics is nonlinear and spatially dependent, with strong interactions between air humidity, temperature, flow, type of wood and chips size. This translates in several complex phenomena, difficult to model accurately by first principles. The end aim in this work is implementing a model predictive control (MPC) for an industrial MDF dryer which reaches the desired fiber humidity by the most energy-efficient control path. To this aim, a suitable grey-box model of the dryer is developed first. Then, based on it, a moving-horizon estimator is used to infer the unmeasured process inputs and model parameters, which provides the required inputs to a tracking MPC with economic considerations. An efficient implementation of the optimization problems has been done using orthogonal collocation for model discretization and modern software for large-scale problems, including automatic differentiation and a sparse interior point solver. Previously to the actual implementation on-site, the proposed controller is tested in simulation with a detailed distributed-parameter model of a generic MDF dryer.
机译:中密度纤维板(MDF)是一种流行的和廉价的木材面板,其精确控制纤维湿度是获得所需产品质量的关键。干燥动力学是非线性和空间依赖性的,在空气湿度,温度,流量,木材和芯片型之间的强相互作用。这在几种复杂现象中转化,难以通过第一原理准确模拟。本作工作中的最终目的是实现用于工业MDF干燥器的模型预测控制(MPC),其通过最节能的控制路径达到所需的纤维湿度。为此目的,首先开发出合适的干燥灰盒型号。然后,基于它,移动地平线估计器用于推断出未测量的处理输入和模型参数,这为跟踪MPC提供了经济考虑的所需输入。已经使用正交搭配进行了用于大规模问题的模型离散化和现代软件的正交搭配,包括自动分化和稀疏内点求解器的高效实现。以前在现场实际实现中,通过通用MDF烘干机的详细分布式参数模型进行仿真测试所提出的控制器。

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