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首页> 外文期刊>Food and Bioproducts Processing. Transactions of the Institution of Chemical Engineers, Part C >Dynamic modeling and control of soybean meal drying in a direct rotary dryer.
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Dynamic modeling and control of soybean meal drying in a direct rotary dryer.

机译:直接旋转干燥机中豆粕干燥的动态建模和控制。

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This paper presents the analysis of the dynamic model and the application of Proportional, Integral and Derivative (PID) control in the soybean meal drying in a industrial direct rotary dryer by computational tests. Therefore, load disturbances as step, pseudorandom, and impulse were applied in the inlet speed and in the inlet moisture of soybean meal in the dryer. Later, the output responses for perturbations were investigated with control systems. The application of feedback PID control showed satisfactory results, returning expected output moisture. According to the Integral Square Error (ISE) the manipulated variables that showed better controllability were the inlet speed, when the perturbation was in the soybean meal inlet moisture; and the inlet temperature of drying air, when the perturbation was in the inlet speed of soybean meal. These results are coherent with literature and conclude that, the tuning feedback PID control keeps the output moisture of soybean meal inside the specifications with fast results. All rights reserved, Elsevier.
机译:本文通过计算试验,介绍了动力学模型的分析以及比例,积分和微分(PID)控制在工业直接旋转干燥机豆粕干燥中的应用。因此,在干燥机中豆粕的入口速度和入口水分中施加了负荷扰动,如阶跃,伪随机和脉冲。后来,用控制系统研究了摄动的输出响应。反馈PID控制的应用显示出令人满意的结果,返回了预期的输出水分。根据积分平方误差(ISE),表现出更好的可控制性的操纵变量是入口速度,当扰动是在豆粕入口水分中时。和摄动是在豆粕的入口速度时,干燥空气的入口温度。这些结果与文献相吻合,并得出结论,调节反馈PID控制使豆粕的输出水分保持在规格范围内,结果很快。保留所有权利,Elsevier。

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