空气处理装置的建模:hammerstein -双线性模型识别方法

I. Zajic, T. Larkowski, M. Sumislawska, K. Burnham, D. Hill
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引用次数: 24

摘要

本文重点研究了空气处理机组(AHU)的建模和系统识别,该机组是专用于洁净室制造的大型采暖通风和空调(HVAC)系统的一部分。目的是将该模型用于后续的控制优化和进一步的控制系统设计。AHU的底层物理关系通过白盒模型进行研究。在考虑白盒模型的基础上,提出了离散时间双线性黑盒模型。AHU的冷却/加热能力是通过水阀来改变的。该阀在系统输入上引入了Hammerstein非线性,需要与代表AHU加热/冷却盘管的动态双线性模型一起进行额外识别。然后根据实际测量估计离散时间模型系数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modelling of an Air Handling Unit: A Hammerstein-bilinear Model Identification Approach
The paper focuses on modelling and system identification of an air handling unit (AHU), which is part of larger heating ventilation and air conditioning (HVAC) system dedicated for clean room manufacturing. The aim is to use the model for subsequent control optimisation and further for control system design. The underlying physical relations of an AHU are investigated through a white-box model. Based on the white-box model considerations a discrete-time bilinear black-box model is proposed. The AHU cooling/heating capacity is altered by means of water valves. The valve introduces a Hammerstein nonlinearity on the system input, which needs to be additionally identified together with the dynamic bilinear model representing the heating/cooling coil of the AHU. The discrete-time model coefficients are then estimated based on real measurements.
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