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Optimal tuning of cascaded control architectures for nonlinear HVAC systems

机译:非线性HVAC系统级联控制架构的最佳调整

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摘要

Cascaded controllers have been shown in recent literature to significantly reduce hunting behavior and improve the performance of a variety of HVAC systems. The cascaded architecture uses multiple proportional-integral-derivative loops, standard in industry and building automation controls, to minimize the effects of load dependent nonlinearities. This article builds on previous work by defining and demonstrating the properties of two nonlinear gap metrics that quantify the closed-loop linearization of the cascaded control structure and enable proper tuning of the inner-loop proportional gain. This is followed by the development of a linear quadratic framework that enables simultaneous tuning of inner- and outer-loop control gains. The proposed gap metrics and tuning procedures are demonstrated with two case studies. A simple single input, two output example plant is used to demonstrate the benefits of the proposed tuning method compared to standard proportional-integral-derivative control and successive loop closure tuning techniques. The tuning approach is also applied to the control of a two-ton, residential heat pump system. The proposed metrics and tuning techniques showed significant improvement in control over standard proportional-integral-derivative control tuning methods in both simulation and experiment.
机译:最近的文献中已经显示了级联控制器,以显着降低狩猎行为,提高各种HVAC系统的性能。级联架构采用多种比例整体衍生循环,工业和建筑自动化控制标准,以最大限度地减少负载依赖性非线性的影响。本文通过定义和展示两种非线性间隙度量的属性来构建以前的工作,该属性量化了级联控制结构的闭环线性化,并能够正确调谐内圈比例增益。随后是开发线性二次框架,可以同时调谐内部和外环控制增益。拟议的差距指标和调整程序是用两种案例研究证明。一个简单的单个输入,两个输出示例工厂用于展示所提出的调谐方法的优势与标准比例积分 - 衍生控制和连续的环路闭合调谐技术相比。调谐方法也应用于两吨,住宅热泵系统的控制。拟议的指标和调谐技术表明,对仿真和实验的标准比例积分 - 积分控制调整方法的控制显着改善。

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