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Simultaneous model of chlorine dosing and decay in drinking water distribution system and model predictive control application

机译:饮用水分配系统中氯的定量投加与衰减同时模型及模型预测控制应用

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摘要

The most commonly applied active disinfectant in drinking water distribution system (DWDS) is free chlorine residual (FCR) in the form of hypochlorous acid and hypochlorite ion. The concentration of FCR decreases along the transport pipeline. Controlled replenishment of chlorine at various sites in DWDS is critical to maintain the FCR in the safe range of 0.2-0.6 ppm. This study proposed a multiple-input multiple-output (MIMO) model (developed in Simulink of Matlab 7.0.1) that simultaneously takes into account chlorine dosing and decay process with the considerations of process disturbances. The model is further implemented into a centralised model predictive control (CMPC) system. The advantages of our CMPC system in controlling multiple outputs are its robustness and short settling time, compared to the conventional process-data-based proportional integral (PI) control strategies. Moreover, the simplicity of this reactive-transport-model-based MIMO control system and the use of Matlab promise an easy adaptation to field test and plant implementation. It addresses an important need in water quality management, particularly for developing countries.
机译:饮用水分配系统(DWDS)中最常用的活性消毒剂是次氯酸和次氯酸根离子形式的游离氯残留物(FCR)。 FCR的浓度沿运输管道降低。在DWDS的各个位置进行受控的氯补充,对于将FCR维持在0.2-0.6 ppm的安全范围内至关重要。这项研究提出了一种多输入多输出(MIMO)模型(在Matlab 7.0.1的Simulink中开发),该模型同时考虑了过程干扰,并考虑了氯的添加和衰减过程。该模型进一步实现为集中模型预测控制(CMPC)系统。与传统的基于过程数据的比例积分(PI)控制策略相比,我们的CMPC系统在控制多个输出方面的优势在于其坚固性和较短的建立时间。而且,基于反应式传输模型的MIMO控制系统的简单性和Matlab的使用保证了其易于适应现场测试和工厂实施。它满足了水质管理的一项重要需求,特别是对于发展中国家。

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