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Forecasting Loss of Ecosystem Service Value Using a BP Network: A Case Study of the Impact of the South-to-north Water Transfer Project on the Ecological Environmental in Xiangfan, Hubei Province, China
引用本文:Chen YF,Zhou JX,Xiao J,Li YP. Forecasting Loss of Ecosystem Service Value Using a BP Network: A Case Study of the Impact of the South-to-north Water Transfer Project on the Ecological Environmental in Xiangfan, Hubei Province, China[J]. Biomedical and environmental sciences : BES, 2003, 16(4): 379-391
作者姓名:Chen YF  Zhou JX  Xiao J  Li YP
作者单位:EnvironmentalScienceandEngineeringCollege,HuazhongUniversityofScienceandTechnology,Wuhan430074,Hubei,China
摘    要:Objective To recognize and assess the impact of the South-to-north Water Transfer Project(SNWTP) on the ecological environment of Xiangfan, Hubei Province, situated in the water-out area,and develop sound scientific countermeasures. Methods A three-layer BP network was built to

关 键 词:南水北调工程 SNWTP 生态环境 人工神经系统网络 BP网络 生态系统 ESV 人工智能

Forecasting loss of ecosystem service value using a BP network: a case study of the impact of the South-to-north Water Transfer Project on the ecological environmental in Xiangfan, Hubei Province, China
Chen Yun-Feng,Zhou Jing-Xuan,Xiao Jie,Li Yan-Ping. Forecasting loss of ecosystem service value using a BP network: a case study of the impact of the South-to-north Water Transfer Project on the ecological environmental in Xiangfan, Hubei Province, China[J]. Biomedical and environmental sciences : BES, 2003, 16(4): 379-391
Authors:Chen Yun-Feng  Zhou Jing-Xuan  Xiao Jie  Li Yan-Ping
Affiliation:Environmental Science and Engineering College, Huazhong University of Science and Technology, Wuhan 430074, Hubei, China. tea69@sohu.com
Abstract:Objective To recognize and assess the impact of the South-to-north Water Transfer Project (SNWTP) on the ecological environment of Xiangfan, Hubei Province, situated in the water-out area, and develop sound scientific countermeasures. Methods A three-layer BP network was built to simulate topology and process of the eco-economy system of Xiangfan. Historical data of ecological environmental factors and socio-economic factors as inputs, and corresponding historical data of ecosystem service value (ESV) and GDP as target outputs, were presented to train and test the network. When predicted input data after 2001 were presented to trained network as generalization sets, ESVs and GDPs of 2002, 2003, 2004... till 2050 were simulated as output in succession. Results Up to 2050, the area would have suffered an accumulative total ESV loss of RMB 104.9 billion, which accounted for 37.36% of the present ESV. The coinstantaneous GDP would change asynchronously with ESV, it would go through an up-to-down process and finally lose RMB89.3 billion, which accounted for 18.71% of 2001. Conclusions The simulation indicates that ESV loss means damage to the capability of socio-economic sustainable development, and suggests that artificial neural networks (ANNs) provide a feasible and effective method and have an important potential in ESV modeling.
Keywords:Artificial neural network  BP  Ecosystem service value  South-to-north Water Transfer Project
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