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Arrangement of throughput manipulator and inventory control in plantwide control

机译:工厂范围控制中的吞吐量操纵器和库存控制的安排

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The arrangement of the throughput/inventory control in plantwide control is studied in this article. Based on the way the production rate change is handled, two basic product quality control principles are explored. For the case of the conventional control structure, i.e., constant reactor level and temperature, the importance of the interaction between the flow and composition dynamics is pointed out. A steady-state interaction measure, relative disturbance gain, is employed to evaluate the appropriateness of the material balance control. Moreover, the relative disturbance gain can be expressed in terms of the design parameters, e.g., composition and recycle ratio. This serves as a basis for the selection of the throughput manipulator. The results show that the external flow, i.e., feed or product flow, is preferred over the internal flows. For the cases of variable reactor holdup, the dynamic interaction becomes important. That means, despite having a perfect steady-state interaction measure, schemes with significant dynamic interaction lead to poor closed-loop flow dynamics. Thus, the material balance control should be designed such that the dynamic interaction is minimized. Therefore, the tuning of the flow dynamics becomes important. Results also show that we should use the external flow as the throughput manipulator and tune the inventory control loops such that the flow/composition interaction is minimized. Since flow/composition interaction is inherent in recycle processes, the results can be extended to more complex recycle processes, e.g., systems with more than one recycle streams, in a straightforward manner. [References: 21]
机译:本文研究了工厂范围控制中的吞吐量/库存控制的安排。基于处理生产率变化的方式,探索了两个基本的产品质量控制原理。对于常规控制结构的情况,即恒定的反应器水平和温度,指出了流动和组成动力学之间相互作用的重要性。采用稳态相互作用测量,即相对干扰增益,来评估材料平衡控制的适当性。而且,相对扰动增益可以用设计参数,例如组成和循环比来表示。这作为选择吞吐量操纵器的基础。结果表明,外部流量,即进料或产品流量,比内部流量更可取。对于可变反应堆滞留率的情况,动态相互作用变得很重要。这意味着,尽管具有完善的稳态交互作用度量,但具有显着动态交互作用的方案会导致不良的闭环流动动力学。因此,材料平衡控制应设计成使动态相互作用最小化。因此,流动动力学的调整变得重要。结果还表明,我们应该使用外部流程作为吞吐量操纵器,并调整库存控制回路,以使流程/成分之间的相互作用最小化。由于流/组分相互作用是再循环过程中固有的,因此可以以直接的方式将结果扩展到更复杂的再循环过程,例如具有多个再循环流的系统。 [参考:21]

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