Xu Jiahong
Robotics Institute, Ningbo University of Technology, Ningbo 315211, China.
Sensors (Basel). 2024 Sep 3;24(17):5732. doi: 10.3390/s24175732.
Existing control strategies, such as Real-time Optimization (RTO), Dynamic Real-time Optimization (DRTO), and Economic Model Predictive Control (EMPC) cannot enable optimal operation and control behavior in an optimal fashion. This work proposes a novel control strategy, named the efficiency-oriented model predictive control (MPC), which can fully realize the potential of the optimization margin to improve the global process performance of the whole system. The ideas of optimization margin and optimization efficiency are first proposed to measure the superiority of the control strategy. Our new efficiency-oriented MPC innovatively uses a nested optimization structure to optimize the optimization margin directly online. To realize the computation, a Periodic Approximation technique is proposed, and an Efficiency-Oriented MPC Type I is constructed based on the Periodic Approximation. In order to alleviate the strict constraint of Efficiency-Oriented MPC Type I, the zone-control-based optimization concept is used to construct an Efficiency-Oriented MPC Type II. These two well-designed efficiency-oriented controllers were compared with other control strategies over a Continuous Stirred Tank Reactor (CSTR) application. The simulation results show that the proposed control strategy can generate superior closed-loop process performance, for example, and the Efficiency-Oriented MPC Type I can obtain 7.11% higher profits than those of other control strategies; the effectiveness of the efficiency-oriented MPC was, thereby, demonstrated.
现有的控制策略,如实吋优化(RTO)、动态实时优化(DRTO)和经济模型预测控制(EMPC),无法以最优方式实现最优运行和控制行为。本文提出了一种新颖的控制策略,即效率导向型模型预测控制(MPC),它能够充分发挥优化裕度的潜力,以提高整个系统的全局过程性能。首先提出了优化裕度和优化效率的概念,用于衡量控制策略的优越性。我们新的效率导向型MPC创新性地采用嵌套优化结构直接在线优化优化裕度。为实现计算,提出了一种周期近似技术,并基于该周期近似构建了I型效率导向型MPC。为了缓解I型效率导向型MPC的严格约束,采用基于区域控制的优化概念构建了II型效率导向型MPC。在连续搅拌釜式反应器(CSTR)应用中,将这两种精心设计的效率导向型控制器与其他控制策略进行了比较。仿真结果表明,所提出的控制策略能够产生优越的闭环过程性能,例如,I型效率导向型MPC比其他控制策略获得的利润高出7.11%;从而证明了效率导向型MPC的有效性。