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A hierarchical scheduled optimization and control for minimizing production cost and energy consumption of CSTR

机译:分层的计划优化和控制,可最大程度地降低CSTR的生产成本和能耗

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For traditional chemical process industry, the main aims of production in most processes are to promote quality of productivity and to maximizing economic profits, but fewer works strive to reduce energy consumption through optimal production schedule and optimal process operation. In this study, a hierarchical scheduled optimal and control strategy for continuous flow stirred tank reactor(CSTR) operation is presented in detail. A performance index is used to minimize total energy consumption, other than maximize profit. Meanwhile, production schedule optimization is combined with optimal process operation based on taking the presence of ever-changing external influences into account, such as changing raw material prices in marketplace, the depreciation cost of main equipments and servicing facilities, wages of workers, utilities cost for the premise condition. The optimal setpoints of key variables in process are derived from top production schedule optimization layer, and optimal process operation which model predictive control algorithm is implemented at lower optimal process control operation layer. The effects of production factors on the total energy consumption are analyzed. The effectiveness of this method is demonstrated by CSTR case study.
机译:对于传统的化学过程工业而言,大多数过程中生产的主要目的是提高生产率和最大化经济利润,但是通过最佳的生产计划和最佳的过程操作来努力减少能耗的工作却很少。在这项研究中,详细介绍了连续流搅拌釜反应器(CSTR)操作的分级计划优化和控制策略。性能指标用于使总能耗最小化,而不是使利润最大化。同时,在考虑到不断变化的外部影响因素的情况下,将生产计划优化与最佳工艺操作相结合,例如,市场中原材料价格的变动,主要设备和服务设施的折旧成本,工人的工资,公用事业成本为前提条件。过程的关键变量的最佳设定点是从最高生产计划优化层得出的,而在预测过程中,在较低的最优过程控制操作层上实现了模型预测控制算法的最优过程操作。分析了生产要素对总能耗的影响。 CSTR案例研究证明了该方法的有效性。

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