CLIPS based decision support system for water distribution networks

Q2 Engineering
K. Sandeep, K. Rakesh
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引用次数: 6

Abstract

Abstract. The difficulty in knowledge representation of a water distribution network (WDN) problem has contributed to the limited use of artificial intelligence (AI) based expert systems (ES) in the management of these networks. This paper presents a design of a Decision Support System (DSS) that facilitates "on-demand'' knowledge generation by utilizing results of simulation runs of a suitably calibrated and validated hydraulic model of an existing aged WDN corresponding to emergent or even hypothetical but likely scenarios. The DSS augments the capability of a conventional expert system by integrating together the hydraulic modelling features with heuristics based knowledge of experts under a common, rules based, expert shell named CLIPS (C Language Integrated Production System). In contrast to previous ES, the knowledge base of the DSS has been designed to be dynamic by superimposing CLIPS on Structured Query Language (SQL). The proposed ES has an inbuilt calibration module that enables calibration of an existing (aged) WDN for the unknown, and unobservable, Hazen-Williams C-values. In addition, the daily run and simulation modules of the proposed ES further enable the CLIPS inference engine to evaluate the network performance for any emergent or suggested test scenarios. An additional feature of the proposed design is that the DSS integrates computational platforms such as MATLAB, open source Geographical Information System (GIS), and a relational database management system (RDBMS) working under the umbrella of the Microsoft Visual Studio based common user interface. The paper also discusses implementation of the proposed framework on a case study and clearly demonstrates the utility of the application as an able aide for effective management of the study network.
基于CLIPS的配水管网决策支持系统
摘要基于人工智能(AI)的专家系统(ES)在配水网络管理中的应用有限,这是由于知识表示的困难造成的。本文提出了一种决策支持系统(DSS)的设计,该系统通过利用对现有老旧WDN的适当校准和验证的水力模型的模拟运行结果,促进了“按需”知识的生成,该模型对应于紧急情况或甚至假设但可能出现的情况。DSS通过将水力建模特征与基于启发式的专家知识集成在一个名为CLIPS (C语言集成生产系统)的通用、基于规则的专家外壳下,增强了传统专家系统的能力。与以前的ES相比,决策支持系统的知识库通过在结构化查询语言(SQL)上叠加CLIPS而被设计为动态的。提出的ES有一个内置的校准模块,可以对未知和不可观测的Hazen-Williams c值校准现有(老化)WDN。此外,拟议ES的日常运行和仿真模块进一步使CLIPS推理引擎能够评估任何紧急或建议测试场景的网络性能。提出的设计的另一个特点是,DSS集成了计算平台,如MATLAB、开源地理信息系统(GIS)和一个关系数据库管理系统(RDBMS),该系统在基于Microsoft Visual Studio的公共用户界面的保护下工作。本文还讨论了一个案例研究中所提出的框架的实施,并清楚地展示了该应用程序作为有效管理学习网络的得力助手的实用性。
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
Drinking Water Engineering and Science
Drinking Water Engineering and Science Environmental Science-Water Science and Technology
CiteScore
3.90
自引率
0.00%
发文量
3
审稿时长
40 weeks
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