首页> 外文会议>Control Systems Conference >DISTRIBUTED PARAMETER PREDICTIVE CONTROL OF BLEACHING TOWERS
【24h】

DISTRIBUTED PARAMETER PREDICTIVE CONTROL OF BLEACHING TOWERS

机译:漂白塔的分布式参数预测控制

获取原文

摘要

In bleaching towers the process variables, such as lignin and chemical concentrations, vary spatially within the reactor. Processes in which the variables of interest vary spatially are termed distributed parameter systems (DPS) and represent a substantial challenge for developing high performance control systems. This control challenge in DPS stems from the requirement that process dynamics must be represented in terms of partial differential equations (PDE) and/or integral equations; whereas, almost all of control theory assumes that the process dynamics can be represented by ordinary differential equations (ODE). In mis paper, we present the key ideas in the development of a distributed parameter approach to model predictive control (MFC) of chemical bleaching towers. The proposed control approach is based on the method of characteristics and uses finite difference approximations of the second-order (diffusion) terms in bleaching tower models. This approach allows the underlying PDE model to be converted to a set of ODEs, which are amenable to the rich array of advanced control techniques currently available. The efficacy of the proposed method is illustrated using a chlorine dioxide bleaching case study. It should be noted that although the method is illustrated with a ClO_2 simulation study, our technique applies to any convection-diffusion-reaction system at high Peclet numbers. The performance of our approach is compared to a more standard, finite-difference MPC approach with respect to control accuracy, robustness to plant-model mismatch and computational expense.
机译:在漂白塔中,过程变量,例如木质素和化学浓度,在反应器内空间差异。其中感兴趣变量在空间上变化的过程被称为分布式参数系统(DPS),并表示用于开发高性能控制系统的大量挑战。这种控制DPS挑战源于过程动态必须以部分微分方程(PDE)和/或整体方程表示的要求;然而,几乎所有的控制理论都认为过程动态可以由常微分方程(ODE)表示。在MIS论文中,我们展示了在化学漂白塔的模型预测控制(MFC)的分布式参数方法开发中的关键思路。所提出的控制方法基于特征方法,并在漂白塔模型中使用二阶(扩散)术语的有限差分近似。这种方法允许底层PDE模型转换为一组ODES,其可用于当前可用的丰富的先进控制技术阵列。使用氯二氧化氯漂白案例研究说明了所提出的方法的功效。应当注意,尽管该方法用CLO_2仿真研究说明,但我们的技术适用于高Peclet数的任何对流扩散反应系统。将我们的方法的性能与更标准的有限差异MPC方法进行比较,以控制精度,植物模型错配和计算费用的鲁棒性。

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