...
首页> 外文期刊>IFAC PapersOnLine >Application of Economics Optimizing Control to a Two-step Transesterification Reaction in a Pilot-Scale Reactive Distillation Column
【24h】

Application of Economics Optimizing Control to a Two-step Transesterification Reaction in a Pilot-Scale Reactive Distillation Column

机译:经济优化控制在中试反应精馏塔两步酯交换反应中的应用

获取原文
           

摘要

The challenges in the chemical process industry of tighter environmental and safety constraints, a higher economic efficiency and an operation in a more dynamic environment motivate the utilization of optimizing control where economic policies are integrated into a (often nonlinear) model predictive control scheme. This so-called one-layer approach or dynamic real-time optimization (D-RTO) has the advantage that the processes are dynamically steered towards the most profitable region. High-fidelity dynamic process models are a basic prerequisite for a good controller performance, and building such models is a challenge. Using highly complex models also may lead to long computation times and thus feedback delays. These issues are in practice avoided by applying only steady-state optimization based on nonlinear models (RTO) and/or using simplified models in MPC. However, the development of computational methods that are able to solve large-scale dynamic optimization problems efficiently have paved the way for applications of economics optimizing control to complex chemical processes. In this contribution, we will demonstrate that a real complex pilot-scale chemical processes, a two-step transesterification realized by reactive distillation that is described by a large DAE model can be operated at the economic optimum by using direct optimizing control. We discuss the problem formulation and the numerical methods used and show experimental data that were obtained at the real process.
机译:在化学过程工业中,更严格的环境和安全约束,更高的经济效率以及在更动态的环境中运行所带来的挑战,促使人们在经济政策被整合到(通常是非线性的)模型预测控制方案中时使用优化控制。这种所谓的单层方法或动态实时优化(D-RTO)的优势在于,这些过程可以动态地转向最有利可图的区域。高保真动态过程模型是良好的控制器性能的基本前提,而建立这样的模型是一个挑战。使用高度复杂的模型也可能导致较长的计算时间,从而导致反馈延迟。实际上,通过仅应用基于非线性模型(RTO)的稳态优化和/或在MPC中使用简化模型,可以避免这些问题。然而,能够有效解决大规模动态优化问题的计算方法的发展为将经济优化控制应用于复杂化学过程铺平了道路。在这一贡献中,我们将证明,通过使用直接优化控制,可以在经济最佳的条件下运行真正复杂的中试规模化学过程,通过大型DAE模型描述的通过反应蒸馏实现的两步酯交换反应。我们讨论了问题的表述和所使用的数值方法,并显示了在实际过程中获得的实验数据。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号