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首页> 外文期刊>International Journal of Energy Optimization and Engineering: An official publication of the Information Resources Management Association >Location selection for Installation of Surface Water Treatment Plant by Applying a New Sinusoidal Analytical Hierarchy Process: Application of new MCDM in Location Detection
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Location selection for Installation of Surface Water Treatment Plant by Applying a New Sinusoidal Analytical Hierarchy Process: Application of new MCDM in Location Detection

机译:采用新的正弦分析层次处理来安装地表水处理设备的位置选择:新MCDM在位置检测中的应用

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摘要

Water treatment plants (WTPs) are responsible for ensuring supply of healthy water to urban and rural consumers for drinking and other related purposes. But the arbitrary selection of a location for installation or relocation of WTPs often fails the purpose of the plant. Presently studies in location selection for water treatment plant are rare. Multi-criteria decision making (MGDM) methods and bagged polynomial neural networks (PNN) were found to be exemplary and easy to use tools for prediction, simulation and optimization of decision-making objectives. The present study tries to apply the advantages of MCDM and bagged PNNs in the identification of an ideal location for a surface water treatment plant. The most significant parameter is found to be WQI which represents the overall quality of water suitable for domestic use. The PNN models were developed with all the selected eight alternatives as input and output. The algorithms like GMDH, SFS, SMS, and QC were used to estimate the weight of connections in between the input and hidden; and hidden and output layers separately for each segment. The application of these two soft computation tools provides an opportunity to the decision maker in the selection of optimal location with the help of an objective and cognitive method.
机译:水处理厂(WTPS)负责确保健康水供应到城市和农村消费者的饮用和其他相关目的。但是,用于安装或重定位的任意选择WTP的搬迁通常失败了工厂的目的。目前在水处理厂的定位选择中的研究是罕见的。发现多标准决策(MGDM)方法和袋装多项式神经网络(PNN)是典型的且易于使用用于决策目标的预测,模拟和优化的工具。本研究试图在识别地表水处理厂的理想位置来应用MCDM和袋装PNN的优点。发现最重要的参数是WQI,它代表了适合国内使用的水的整体质量。 PNN模型是用所有选定的八个替代品开发的,作为输入和输出。像GMDH,SFS,SMS和QC等算法用于估计输入和隐藏之间的连接的重量;每个段分别隔开隐藏和输出层。在目标和认知方法的帮助下,这两个软计算工具的应用为决策者提供了决策者在选择最佳位置。

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