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The Constraints Aggregation Technique for Control of Ethanol Production

机译:控制乙醇生产的约束聚集技术

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In the article a new method for control and optimization of the ethanol production process was presented. The fed batch reactor for ethanol production can be described by the system of the nonlinear differential-algebraic equations. The new control approach base on the direct shooting method, which leads to a medium- or large-scale nonlinear optimization problem. In the presented research, three main aims of the optimization with the differential-algebraic constraints are indicated. The first one is the minimization of the cost function, which represents a process performance index. The second and third aims are to provide consistent initial conditions for the system to be solved and to ensure the continuity of the differential state trajectories. For these reasons, the large number of decision variables and equality constraints, connected with both consistent initial conditions for the differential-algebraic system and continuity of the differential state trajectories, was treated using the constraints aggregation technique. The direct shooting approach together with constraints aggregation technique enables us to obtain a new form of the nonlinear optimization task.
机译:在制品中,介绍了一种新的控制和优化乙醇生产过程的方法。用于乙醇生产的喂食批量反应器可以通过非线性差分代数等式的系统描述。直接拍摄方法的新控制方法基础,导致中型或大规模非线性优化问题。在本研究中,指出了用差分代数约束优化的三个主要目的。第一个是最小化成本函数,这代表了过程性能指标。第二和第三个目的是为要解决的系统提供一致的初始条件,并确保差分状态轨迹的连续性。由于这些原因,使用约束聚合技术处理与差分代数系统的一致初始条件以及差分状态轨迹的连续性连接的大量判定变量和平等约束。直接拍摄方法以及约束聚合技术使我们能够获得新形式的非线性优化任务。

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