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Integrating dynamic economic optimization and model predictive control for optimal operation of nonlinear process systems

机译:集成动态经济优化和模型预测控制以优化非线性过程系统

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摘要

In this work, we propose a conceptual framework for integrating dynamic economic optimization and model predictive control (MPC) for optimal operation of nonlinear process systems. First, we introduce the proposed two-layer integrated framework. The upper layer, consisting of an economic MPC (EMPC) system that receives state feedback and time-dependent economic information, computes economically optimal time-varying operating trajectories for the process by optimizing a time-dependent economic cost function over a finite prediction horizon subject to a nonlinear dynamic process model. The lower feedback control layer may utilize conventional MPC schemes or even classical control to compute feedback control actions that force the process state to track the time-varying operating trajectories computed by the upper layer EMPC. Such a framework takes advantage of the EMPC ability to compute optimal process time-varying operating policies using a dynamic process model instead of a steady-state model, and the incorporation of suitable constraints on the EMPC allows calculating operating process state trajectories that can be tracked by the control layer. Second, we prove practical closed-loop stability including an explicit characterization of the closed-loop stability region. Finally, we demonstrate through extensive simulations using a chemical process model that the proposed framework can both (1) achieve stability and (2) lead to improved economic closed-loop performance compared to real-time optimization (RTO) systems using steady-state models.
机译:在这项工作中,我们提出了一个概念框架,用于集成动态经济优化和模型预测控制(MPC),以优化非线性过程系统的运行。首先,我们介绍建议的两层集成框架。上层由接收状态反馈和时变经济信息的经济MPC(EMPC)系统组成,它通过在有限的预测范围内优化时变经济成本函数来计算过程的经济最优时变运行轨迹到非线性动态过程模型。较低的反馈控制层可以利用常规的MPC方案甚至是经典控制来计算反馈控制动作,以迫使过程状态跟踪由上层EMPC计算的时变操作轨迹。这样的框架利用EMPC的能力,使用动态过程模型而不是稳态模型来计算最佳过程时变操作策略,并且在EMPC上引入适当的约束允许计算可以跟踪的操作过程状态轨迹通过控制层。其次,我们证明了实际的闭环稳定性,包括对闭环稳定性区域的明确表征。最后,我们通过使用化学过程模型的广泛仿真证明,与使用稳态模型的实时优化(RTO)系统相比,所提出的框架既可以(1)实现稳定性,又可以(2)改善经济闭环性能。

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