论文标题

具有快速自适应多元PV MPC公式的太阳能收集器的非线性温度调节

Nonlinear Temperature Regulation of Solar Collectors with a Fast Adaptive Polytopic LPV MPC Formulation

论文作者

Pipino, Hugo A., Morato, Marcelo M., Bernardi, Emanuel, Adam, Eduardo J., Normey-Rico, Julio E.

论文摘要

太阳能收集器中的温度控制是一个非线性问题:温度升高的动力学因流经收集器的油和沿收集器区域的温度梯度而有所不同。通过这种方式,这项工作研究了在线性参数变化(LPV)形式主义中开发的模型预测控制(MPC)应用的制定,该应用是太阳能收集器过程的模型。所提出的系统是一种自适应MPC,开发了终端集约束,并考虑了模型的调度层。在每个瞬间,都解决了两个二次编程(QPS)程序:第一个考虑n个步骤的落后地平面,以查找定义最佳LTI预测模型的虚拟模型过程调谐变量,考虑到多型系统的顶点;然后,第二个QP使用此LTI模型沿N步骤的前向地平线优化性能。本文以现实的太阳能收集器仿真结果结尾,将提出的MPC与文献(线性MPC和鲁棒的管MPC)进行比较。提出了有关结果,设计程序和三种方法的计算工作的讨论。它显示了建议的MPC设计如何在参考跟踪和扰动拒绝方面能够超过这些其他标准方法。

Temperature control in solar collectors is a nonlinear problem: the dynamics of temperature rise vary according to the oil flowing through the collector and to the temperature gradient along the collector area. In this way, this work investigates the formulation of a Model Predictive Control (MPC) application developed within a Linear Parameter Varying (LPV) formalism, which serves as a model of the solar collector process. The proposed system is an adaptive MPC, developed with terminal set constraints and considering the scheduling polytope of the model. At each instant, two Quadratic Programming (QPs) programs are solved: the first considers a backward horizon of N steps to find a virtual model-process tuning variable that defines the best LTI prediction model, considering the vertices of the polytopic system; then, the second QP uses this LTI model to optimize performances along a forward horizon of N steps. The paper ends with a realistic solar collector simulation results, comparing the proposed MPC to other techniques from the literature (linear MPC and robust tube-MPC). Discussions regarding the results, the design procedure and the computational effort for the three methods are presented. It is shown how the proposed MPC design is able to outrank these other standard methods in terms of reference tracking and disturbance rejection.

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