Data-Driven Identification of Dynamic Quality Models in Drinking Water Networks

IF 3 3区 环境科学与生态学 Q2 ENGINEERING, CIVIL
Shen Wang, Ankush Chakrabarty, Ahmad F. Taha
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引用次数: 0

Abstract

Traditional control and monitoring of water quality in drinking water distribution networks (WDNs) rely on mostly model- or toolbox-driven approaches, where the network topology and parameters are assumed to be known. In contrast, system identification (SysID) algorithms for generic dynamic system models seek to approximate such models using only input-output data without relying on network parameters. The objective of this paper is to investigate SysID algorithms for water quality model approximation. This research problem is challenging due to (1) complex water quality and reaction dynamics; and (2) the mismatch between the requirements of SysID algorithms and the properties of water quality dynamics. In this paper, we present the first attempt to identify water quality models in WDNs using only input-output experimental data and classical SysID methods without knowing any WDN parameters. Properties of water quality models are introduced, the ensuing challenges caused by these properties when identifying water quality models are discussed, and remedial solutions are given. Through case studies, we demonstrate the applicability of SysID algorithms, show the corresponding performance in terms of accuracy and computational time, and explore the possible factors impacting water quality model identification.
饮用水网络中动态质量模型的数据驱动识别
传统的饮用水分配网络(wdn)水质控制和监测主要依赖于模型或工具箱驱动的方法,其中网络拓扑结构和参数假设是已知的。相比之下,通用动态系统模型的系统识别(SysID)算法仅使用输入输出数据而不依赖于网络参数来近似这些模型。本文的目的是研究用于水质模型近似的SysID算法。由于:(1)复杂的水质和反应动力学;(2) SysID算法的要求与水质动态特性不匹配。在本文中,我们首次尝试在不知道任何WDN参数的情况下,仅使用输入输出实验数据和经典SysID方法来识别WDN中的水质模型。介绍了水质模型的性质,讨论了这些性质在确定水质模型时所带来的挑战,并给出了补救措施。通过案例研究,我们论证了SysID算法的适用性,在精度和计算时间方面展示了相应的性能,并探讨了影响水质模型识别的可能因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
6.30
自引率
19.40%
发文量
136
审稿时长
7 months
期刊介绍: The Journal of Water Resources Planning and Management reports on all phases of planning and management of water resources. The papers examine social, economic, environmental, and administrative concerns relating to the use and conservation of water. Social and environmental objectives in areas such as fish and wildlife management, water-based recreation, and wild and scenic river use are assessed. Developments in computer applications are discussed, as are ecological, cultural, and historical values.
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