超市制冷系统的混合非线性模型预测控制

C. Sonntag, A. Devanathan, S. Engell, O. Stursberg
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引用次数: 27

摘要

超市制冷系统由于连续动力学的强迫和自主切换以及阀门和压缩机等离散切换执行器的存在而具有混合性质。这些系统的主要控制目标之一是保持温度和压力水平在严格的范围内,同时尽量减少压缩机的磨损。由于传统的控制方法存在很大的改进空间,本文提出了一种针对超市制冷系统的非线性模型预测控制方法。为了增加每次NMPC迭代中非线性优化步骤的可用计算时间,设计了一个在短时间尺度上对过程进行调节的低级控制器。高级优化任务简化为确定该控制器的最优参数。混合过程模型的仿真结果表明,与现有的控制方案相比,该控制方案能够降低压缩机的磨损。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hybrid Nonlinear Model-Predictive Control of a Supermarket Refrigeration System
Supermarket refrigeration systems are of hybrid nature due to forced and autonomous switching of the continuous dynamics and the existence of discretely switched actuators such as valves and compressors. One of the main control goals for these systems is to keep temperature and pressure levels within tight bounds while minimizing the wear of the compressors. Since traditional control schemes leave much room for improvement, this paper presents a new nonlinear model-predictive control approach that is tailored specifically to supermarket refrigeration systems. To increase the computation time available to the nonlinear optimization step in every NMPC iteration, a low-level controller is designed which regulates the process on a short time scale. The high-level optimization task is reduced to the determination of optimal parameters for this controller. Simulation results for a hybrid process model demonstrate that the control scheme is capable of reducing the wear of the compressors compared to existing control schemes.
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