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首页> 外文期刊>Journal of Environmental Engineering >Cyclical hierarchical modeling for water quality model-based DSS module in an urban river system
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Cyclical hierarchical modeling for water quality model-based DSS module in an urban river system

机译:城市河流系统中基于水质模型的DSS模块的循环分层建模

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摘要

Environmental systems modeling has always been at the core of gaining insight into the world. Most environmental systems behave very differently from fairly predictable systems because of nonlinearity in approach and behavior. This paper discusses the problem that exists in effectively modeling a multicriterion and nonlinear parametric system. A cyclical hierarchical model was proposed that allows the user to model the effects of various environmental parameters, which not only propagate as forward processes, but also may have dependencies and carryover effects on other primary set of parameters. This is an adaptation from ecological hierarchies for development of parametric modules in an environmental system. This effect was captured by a set of forward and backward carryover functions that are to be generated as process-specific and time-specific functions. The user expresses control over the effect of each parameter on the other and in terms of iterations that are performed within the cyclical hierarchies and the value of the forward and backward functions that need to be developed. This was integrated into the core of an environmental decision support system (EDSS), which prioritizes a parameter set on the basis of analytical hierarchy process (AHP) to establish a global hierarchy that is then studied in perspective to cyclical hierarchies and nodal relations that exist in such hierarchical forms. The study concerns itself with an urban river system, which involves a multitude of such multivariate parameters. Iterations were performed to see the variations in the global hierarchy. The parameterized form can be used to generate criterion-based output for the cyclical hierarchy sets used, and the change may be adapted pertaining to EDSS output.
机译:环境系统建模一直是获取世界洞察力的核心。由于进近和行为的非线性,大多数环境系统的行为与可预测的系统有很大不同。本文讨论了有效建模多准则和非线性参数系统时存在的问题。提出了一个循环层次模型,该模型允许用户对各种环境参数的影响进行建模,这些环境参数不仅作为正向过程传播,而且可能对其他主要参数集具有依赖性和遗留效果。这是从生态层次结构改编而成的,用于开发环境系统中的参数模块。一组正向和反向结转功能捕获了这种影响,这些功能将作为特定于流程和特定于时间的功能生成。用户通过循环层次结构内执行的迭代以及需要开发的前向和后向函数的值来表示对每个参数对另一个的影响的控制。它已集成到环境决策支持系统(EDSS)的核心中,该系统根据分析层次结构过程(AHP)优先确定参数集,以建立全局层次结构,然后从循环层次结构和节点关系的角度进行研究。以这种分层形式。该研究涉及城市河流系统,其中涉及许多这样的多元参数。执行迭代以查看全局层次结构中的变化。参数化形式可以用于为所使用的循环层次集生成基于标准的输出,并且该改变可以适用于EDSS输出。

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