Hamiltonian two-degrees-of-freedom control of chemical reactors

被引:2
|
作者
Costanza, Vicente [1 ]
Rivadeneira, Pablo S. [1 ]
机构
[1] UNL CONICET, Inst Desarrollo Tecnol Ind Quim, RA-3000 Santa Fe, Argentina
来源
关键词
optimal control; chemical reactors; nonlinear dynamics; optimization; two-degrees-of-freedom control; Hamiltonian systems; MODEL-PREDICTIVE CONTROL;
D O I
10.1002/oca.947
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
A novel unified approach to two-degrees-of-freedom control is devised and applied to a classical chemical reactor model. The scheme is constructed from the optimal control point of view and along the lines of the Hamiltonian formalism for nonlinear processes. The proposed scheme optimizes both the feedforward and the feedback components of the control variable with respect to the same cost objective. The original Hamiltonian function governs the feedforward dynamics, and its derivatives are part of the gain for the feedback component. The optimal state trajectory is generated online, and is tracked by a combination of deterministic and stochastic optimal tools. The relevant numerical data to manipulate all stages come from a unique off-line calculation, which provides design information for a whole family of related control problems. This is possible because a new set of PDEs (the variational equations) allow to recover the initial value of the costate variable, and the Hamilton equations can then be solved as an initial-value problem. Perturbations from the optimal trajectory are abated through an optimal state estimator and a deterministic regulator with a generalized Riccati gain. Both gains are updated online, starting with initial values extracted from the solution to the variational equations. The control strategy is particularly useful in driving nonlinear processes from an equilibrium point to an arbitrary target in a finite-horizon optimization context. Copyright (C) 2010 John Wiley & Sons, Ltd.
引用
收藏
页码:350 / 368
页数:19
相关论文
共 50 条
  • [21] Two-degrees-of-freedom PID controller tuning method
    Wang, Weijie
    Li, Donghai
    Gao, Qirui
    Wang, Chuanfeng
    Qinghua Daxue Xuebao/Journal of Tsinghua University, 2008, 48 (11): : 1962 - 1966
  • [22] Two-Degrees-of-Freedom PID Control with Kalman Filter for Engraving Machine System
    Dong, Shijian
    Hao, Leilei
    Shao, Yiqin
    Liu, Jun
    Han, Lixin
    ACTUATORS, 2023, 12 (11)
  • [23] A novel two-degrees-of-freedom piezoelectric energy harvester
    Wu, Hao
    Tang, Lihua
    Yang, Yaowen
    Soh, Chee Kiong
    JOURNAL OF INTELLIGENT MATERIAL SYSTEMS AND STRUCTURES, 2013, 24 (03) : 357 - 368
  • [24] Local predictability and nonhyperbolicity through finite Lyapunov exponent distributions in two-degrees-of-freedom Hamiltonian systems
    Vallejo, Juan C.
    Viana, Ricardo L.
    Sanjuan, Miguel A. F.
    PHYSICAL REVIEW E, 2008, 78 (06)
  • [25] Robust Speed Control of Permanent Magnet Synchronous Motors Using Two-Degrees-of-Freedom Control
    Mendoza-Mondragon, Fortino
    Manuel Hernandez-Guzman, Victor
    Rodriguez-Resendiz, Juvenal
    IEEE TRANSACTIONS ON INDUSTRIAL ELECTRONICS, 2018, 65 (08) : 6099 - 6108
  • [26] Nonlinear oscillations of an elastic two-degrees-of-freedom pendulum
    Jan Awrejcewicz
    Alexander G. Petrov
    Nonlinear Dynamics, 2008, 53 : 19 - 30
  • [27] Nonlinear oscillations of an elastic two-degrees-of-freedom pendulum
    Awrejcewicz, Jan
    Petrov, Alexander G.
    NONLINEAR DYNAMICS, 2008, 53 (1-2) : 19 - 30
  • [28] A Two-Degrees-of-Freedom System for Wheel Traction Applications
    Roggia, Sara
    Cupertino, Francesco
    Gerada, Chris
    Galea, Michael
    IEEE TRANSACTIONS ON INDUSTRIAL ELECTRONICS, 2018, 65 (06) : 4483 - 4491
  • [29] Two-Degrees-of-Freedom Speed Control of Resonant Mechanical System Based on Hi Control Theory
    Morimoto, S.
    Takeda, Y.
    Denki Gakkai Ronbunshi. D, Sangyo Oyo Bumonshi, 116 (01):
  • [30] Two-degrees-of-freedom speed control of resonant mechanical system based on H∞ control theory
    Morimoto, Shigeo
    Takeda, Yoji
    Electrical Engineering in Japan (English translation of Denki Gakkai Ronbunshi), 1996, 117 (01): : 112 - 121