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Dynamic Analysis and Control of a Polymerization Reaction

机译:聚合反应的动态分析与控制

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In this paper detailed dynamic analysis of a quantitative mathematical model of a polymerization process is presented. The process serves as an appropriate paradigm of multi-variable dynamic systems of strong non-linear coupling in the control of which the state propagation of various internal degrees of freedom cannot directly be controlled: the desired output is nonlinear function of these quantities. In the present example only a single input variable is used as the control signal (process input), and a single output variable is observed (process output) for this purpose. In contrast to a former approach in which the stability of the steady states was proved by perturbation calculus and the process was approximately treated as a 1storder problem in its quasi-stationary limit by an ARMAX-type (AutoRegressive Moving Average model with eXternal input) control, in the present paper the " exact" 2ndorder dynamics of the transitions between different steady states is considered. It is observed that the response of the system is negative definite function of the process input. On this basis a special adaptive controller is constructed the operation of which far excels that of the quasi-stationary 1storder one. It is concluded that with a sampling time of about 0.067/2, 0.067, and 2 × 0.067 s quite precise control can be achieved. This sampling rate is smaller but almost comparable with the 0.2 s sampling time commonly applied for such reactions in the industry. The conclusions are justified by simulation results.
机译:本文介绍了对聚合过程的定量数学模型的详细动态分析。该过程用作控制的适当范例的强度非线性耦合的多变量动态系统,在控制中,不能直接控制各种内部自由度的状态传播:所需的输出是这些数量的非线性函数。在本示例中,仅使用单个输入变量作为控制信号(处理输入),并且为此目的观察单个输出变量(处理输出)。相反,通过扰动微积分证明稳定状态的稳定性的前一种方法,并且该过程近似被Armax型以其准静止限制为1 st 命令问题(自动增加移动平均模型与外部输入)控制,在本文中,“精确”2 nd 在不同稳态之间的过渡之间的顺序动态。观察到系统的响应是过程输入的负定义功能。在此基础上,构造了特殊的自适应控制器的操作,该操作远远超出了准静止的1 st 订单的操作。结论是,可以实现采样时间约为0.067 / 2,0.067和2×0.067秒的精确控制。这种采样率较小,但与普遍应用于该行业中这种反应的0.2秒的采样时间几乎相当。结论通过模拟结果是合理的。

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