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Modeling and simulation for the control of post-combustion in the conditions of the nickel reduction process

机译:镍减镍条件下燃烧控制的建模与仿真

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Complex physical and chemical processes occur in reduction furnaces, characterized by multiple inputs and multiple outputs, strong interactions, nonlinearities and dynamic characteristics that vary with time. Attempts to control the oven using classical control strategies have not been successful. Taking into account that the operation is carried out by operators based on their experience, skill and on the historical behaviour of the process variables, experimental identification is carried out in the afterburning area, with the scoop of knowing the dynamics of the process for its better study and understanding. The identification gives us the possibility of obtaining a mathematical model as close as possible to the plant, which can be used to propose a strategy of temperature control in households 4 and 6 of the furnace. A survey is made of the main theoretical aspects related to the processes of nickel reduction and identification, as well as the input signal to excite the system. The experiments that were carried out are described and the mathematical models obtained are validated, using as tool of calculation the "Toolbox" of identification of the MATLAB program finally an economic and environmental analysis of an adequate control in the post combustion is presented.
机译:复杂的物理和化学过程发生在还原炉中,其特征在于多个输入和多重输出,相互作用,非线性,非线性和动态特性随时间而变化。尝试使用经典控制策略控制烤箱并未成功。考虑到操作员根据其经验,技能和过程变量的历史行为进行操作,在后燃区进行实验识别,挖掘了更好的过程动态的挖掘学习和理解。该识别使我们能够获得尽可能接近工厂的数学模型的可能性,该工厂可用于提出炉子的家庭4和6中的温度控制策略。调查由与镍减少和识别过程相关的主要理论方面,以及激发系统的输入信号。描述了所进行的实验,并且获得的数学模型被验证,使用作为计算识别的“工具箱”验证了MATLAB计划的“工具箱”,介绍了在后燃烧中的适当控制的经济和环境分析。

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