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Polynomial Digital Control of a Series Equal Liquid Tanks

机译:一系列均液罐的多项式数字控制

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Time-delays are mainly caused by the time required to transport mass, energy or information, but they can also be caused by processing time or accumulation. Typical examples of such processes are e.g. pumps, liquid storing tanks, distillation columns or some types of chemical reactors. In many cases time-delay is caused by the effect produced by the accumulation of a large number of low-order systems. Several industrial processes have the time-delay effect produced by the accumulation of a great number of low-order systems with the identical dynamic. The dynamic behavior of series these low-order systems is expressed by high-order system. One of possibilities of control of such processes is their approximation by low-order model with time-delay. The paper is focused on the design of the digital polynomial control of a set of equal liquid cylinder atmospheric tanks. The designed control algorithms are realized using the digital Smith Predictor (SP) based on polynomial approach – by minimization of the Linear Quadratic (LQ) criterion. The LQ criterion was combined with pole assignment.
机译:延迟主要是由传输质量,能量或信息所需的时间引起的,但也可能由处理时间或累积引起。这种方法的典型例子是例如。泵,储液罐,蒸馏塔或某些类型的化学反应器。在许多情况下,时间延迟是由大量低阶系统的累积所产生的影响引起的。许多工业过程具有大量动态相同的低阶系统的累积所产生的时间延迟效应。这些低阶系统的动力学行为由高阶系统表示。控制此类过程的一种可能性是通过具有时滞的低阶模型对其进行逼近。本文着重于一组相等液体气缸大气压罐的数字多项式控制的设计。使用基于多项式方法的数字史密斯预测器(SP),通过最小化线性二次(LQ)准则,可以实现设计的控制算法。 LQ标准与极点分配结合在一起。

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