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Performance Analysis of Data-Driven and Model-Based Control Strategies Applied to a Thermal Unit Model

机译:数据驱动和基于模型的控制策略在热力单元模型中的性能分析

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The paper presents the design and the implementation of different advanced control strategies that are applied to a nonlinear model of a thermal unit. A data-driven grey-box identification approach provided the physically–meaningful nonlinear continuous-time model, which represents the benchmark exploited in this work. The control problem of this thermal unit is important, since it constitutes the key element of passive air conditioning systems. The advanced control schemes analysed in this paper are used to regulate the outflow air temperature of the thermal unit by exploiting the inflow air speed, whilst the inflow air temperature is considered as an external disturbance. The reliability and robustness issues of the suggested control methodologies are verified with a Monte Carlo (MC) analysis for simulating modelling uncertainty, disturbance and measurement errors. The achieved results serve to demonstrate the effectiveness and the viable application of the suggested control solutions to air conditioning systems. The benchmark model represents one of the key issues of this study, which is exploited for benchmarking different model-based and data-driven advanced control methodologies through extensive simulations. Moreover, this work highlights the main features of the proposed control schemes, while providing practitioners and heating, ventilating and air conditioning engineers with tools to design robust control strategies for air conditioning systems.
机译:本文介绍了应用于热力单元非线性模型的不同高级控制策略的设计和实现。数据驱动的灰箱识别方法提供了具有物理意义的非线性连续时间模型,该模型代表了这项工作中利用的基准。该热单元的控制问题很重要,因为它构成了被动空调系统的关键要素。本文分析的高级控制方案用于通过利用流入空气速度来调节热单元的流出空气温度,而流入空气温度被认为是外部干扰。建议的控制方法的可靠性和鲁棒性问题已通过蒙特卡洛(MC)分析进行了验证,以模拟建模不确定性,干扰和测量误差。所取得的结果有助于证明所建议的控制解决方案在空调系统中的有效性和可行的应用。基准模型代表了本研究的关键问题之一,该基准模型用于通过广泛的模拟对不同的基于模型和数据驱动的高级控制方法进行基准测试。此外,这项工作突出了所提出的控制方案的主要特征,同时为从业人员以及供热,通风和空调工程师提供了设计空调系统鲁棒控制策略的工具。

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