首页> 外文期刊>Engineering journal >Neural Network Based Model Predictive Control of Batch Extractive Distillation Process for Improving Purity of Acetone
【24h】

Neural Network Based Model Predictive Control of Batch Extractive Distillation Process for Improving Purity of Acetone

机译:基于神经网络的间歇萃取精馏过程模型预测控制,以提高丙酮的纯度

获取原文
           

摘要

In a pharmaceutical industry, batch extractive distillation (BED), a combination process between extraction and distillation processes, has been widely implemented to separate waste solvent mixture of acetone-methanol because of minimum-boiling azeotrope properties. Normally, water is used as solvent and semi-continues mode is proposed to improve purity of acetone. The solvent is charged into the BED column until the purity of a desired product is achieved. After the total reflux start-up period is ended, a dynamic optimization strategy is applied to determine an acetone distillate composition profile maximizing the weight of the distillate product (acetone). The acetone distillate composition profile is used as the set point of neural network model-based controllers: the neural network direct inverse model control (NNDIC) and neural network based model predictive control (NNMPC) in order to provide the acetone composition with the purity of 94.0% by mole within 9.5 hours. It has been found that although both NNDIC and proportional integral derivative (PID) control can maintain the distillate purity on its specification for the set point tracking and in presence of plant uncertainties, the NNMPC provides much more satisfactory control performance and gives the smoothest controller action without any fluctuation when compared to the NNDIC and PID. (71 views)
机译:在制药工业中,由于沸点最小的共沸物特性,批量萃取蒸馏(BED)是萃取和蒸馏过程之间的结合过程,已广泛用于分离丙酮-甲醇的废溶剂混合物。通常,将水用作溶剂,并提出半连续模式以提高丙酮的纯度。将溶剂加入BED柱中,直到获得所需产品的纯度为止。在总回流启动期结束后,采用动态优化策略来确定使馏出物产物(丙酮)的重量最大的丙酮馏出物组成图。丙酮馏出物组成图用作基于神经网络模型的控制器的设定点:神经网络直接逆模型控制(NNDIC)和基于神经网络的模型预测控制(NNMPC),以便为丙酮组成提供纯度为在9.5小时内为94.0摩尔%。已经发现,尽管NNDIC和比例积分微分(PID)控制均可在设定值跟踪和工厂不确定性存在的情况下保持馏出液纯度在其规格范围内,但NNMPC提供了更为令人满意的控制性能并提供了最平稳的控制器动作与NNDIC和PID相比,没有任何波动。 (71观看次数)

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