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A Data-Driven Dual-Rate Control Method for a Heat Exchanging Process

机译:换热过程的数据驱动双速率控制方法

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摘要

The heat exchanging process is a strong nonlinear and cascade industrial unit, which is effected by the large random disturbances in the steam pressure, the outdoor temperature, and the water discharged by users. To solve this problem, in this paper, a PI controller with unmodeled dynamic compensation is combined with a dual-rate control, and a dynamic model of the supply water temperature in the outer loop with linear model and unknown higher order nonlinear is established by introducing the dynamics of the closed-loop control system for the steam flow-rate with a lifting method. This is then used in designing a one-step optimal PI control algorithm with unmodeled dynamics compensation. Second, a data-driven dual-rate control method is proposed for the control of water temperature and steam flow-rate. The stability and convergence of the proposed algorithm is analyzed. Finally, both, a contrast simulated experiment with the interval intelligent cascade control algorithm and an industrial application are included to demonstrate that the proposed method can control water temperature and steam flow-rate with large random disturbances within the target range of values for process requirements.
机译:换热过程是一个强大的非线性级联工业单元,受蒸汽压力,室外温度和用户排出的水的较大随机干扰的影响。为了解决这个问题,本文将具有无模型动态补偿的PI控制器与双速率控制相结合,通过引入线性模型和未知高阶非线性来建立外循环供水温度的动态模型。用提升方法控制蒸汽流量的闭环控制系统的动力学。然后将其用于设计具有未建模动态补偿的单步最佳PI控制算法。其次,提出了一种数据驱动的双速率控制方法来控制水温和蒸汽流量。分析了所提算法的稳定性和收敛性。最后,包括采用间隔智能级联控制算法的对比模拟实验和工业应用,以证明所提出的方法可以在工艺要求的目标值范围内以较大的随机干扰来控制水温和蒸汽流量。

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