Research of development strategy on China's rural drinking water supply based on SWOT–TOPSIS method combined with AHP-Entropy: a case in Hebei Province
详细信息    查看全文
  • 作者:Jia Xu ; Ping Feng ; Peng Yang
  • 关键词:Rural drinking water supply ; Development strategy ; SWOT ; TOPSIS ; AHP ; Shannon’s entropy
  • 刊名:Environmental Earth Sciences
  • 出版年:2016
  • 出版时间:January 2016
  • 年:2016
  • 卷:75
  • 期:1
  • 全文大小:1,389 KB
  • 参考文献:Balocco C, Grazzini G (2000) Thermodynamic parameters for energy sustainability of urban areas. Sol Energy 69(4):351–356CrossRef
    Cai Y, Liu P (2011) The pricing mechanism for safety drinking water supply in rural area. Energy Procedia 5:1467–1472CrossRef
    Dağdeviren M, Yavuz S, Kılınç N (2009) Weapon selection using the AHP and TOPSIS methods under fuzzy environment. Expert Syst Appl 36:8143–8151CrossRef
    Dai L, Wang J (2011) Evaluation of the profitability of power listed companies based on entropy improved TOPSIS method. Procedia Eng 15:4728–4732CrossRef
    Duarte C, Ettkin LP, Helms MM, Anderson MS (2006) The challenge of Venezuela: a SWOT analysis. Compet Rev 16(3/4):233–247
    Durbach IN, Stewart TJ (2009) Using expected values to simplify decision making under uncertainty. Omega 37(2):312–330CrossRef
    Ehrgott M, Gandibleux X (2003) Multiple criteria optimization: state of the art annotated bibliographic surveys. Springer-Verlag, New York
    Ge X, Liu X (2011) Application of entropy measurement in risk assessment of the engineering project of construction-agent system. Syst Eng Procedia 1:244–249CrossRef
    Figueira J, Greco S, Ehrgott M (2005) Multiple criteria decision analysis: state of the art surveys. Springer, New YorkCrossRef
    He J, Charlet L (2013) A review of arsenic presence in China drinking water. J Hydrol 492:79–88CrossRef
    Herrmann C, Kirchert D, Pan J (2002) Disparities in Chinese economic development: approaches on different levels of aggregation. Econ Syst 26:31–54CrossRef
    Hill T, Westbrook R (1997) SWOT analysis: it’s time for a product recall. Long Range Plan 30:46–52CrossRef
    Hoque BA, Hallman K, Levy J et al (2006) Rural drinking water at supply and household levels: quality and management. Int J Hyg Environ Health 209(5):451–460CrossRef
    Hsiao SW, Chou JR (2006) A Gestalt-like perceptual measure for home page design using a fuzzy entropy approach. Int J Hum-Comput Stud 64:137–156CrossRef
    Hwang CL, Yoon K (1981) Multiple attribute decision making methods and applications: a state-of-the-art survey. Springer, BerlinCrossRef
    Isham J, Kahkonen S (2002) How do participation and social capital affect community-based water projects? Evidence from Central Java, Indonesia. In: Grootaert C, Bastelaer TV (eds) The role of social capital in development: an empirical assessment. Cambridge University Press, Cambridge
    Kahraman C, Demirel NC, Demirel T (2007) Prioritization of e-Government strategies using a SWOT-AHP analysis: the case of Turkey. Eur J Inf Syst 16:284–298CrossRef
    Kurttila M, Pesonen M, Kangas J, Kajanus M (2000) Utilizing the analytic hierarchy process (AHP) in SWOT analysis—a hybrid method and its application to a forest-certification case. Forest Policy Econ 1:41–52CrossRef
    Larsen TA, Gujer W (1997) The concept of sustainable urban water management. Water Sci Technol 35(9):3–10CrossRef
    Lee S, Walsh P (2011) SWOT and AHP hybrid model for sport marketing outsourcing using a case of intercollegiate sport. Sport Manag Rev 14:361–369CrossRef
    Li H, Lv M, Ye S (2011) The research and practice of water quality safety evaluation for Ji Nan urban water supply system. Procedia Environ Sci 11:1197–1203CrossRef
    Moriarty P (1999) Community water, community management: from system to service in rural areas. ITDG Publishing, London
    Parkan C, Wu ML (1997) On the equivalence of operational performance measurement and multiple attribute decision making. Int J Prod Res 35(11):2963–2988CrossRef
    Prokopy LS (2005) The relationship between participation and project outcomes: evidence from rural water supply projects in India. World Dev 33(11):1801–1819CrossRef
    Saaty TL (1980) The analytic hierarchy process. Proceedings of the second international seminar on operational research in the Basque Provinces, pp 189–234
    Saaty TL (1982) Decision making for leaders: the analytic hierarchy process for decisions in a complex world. RWS Publications, Pittsburgh
    Saaty TL (2008) Decision making with the analytic hierarchy process. Int J Serv Sci 1:83–98
    Shannon CE (1948) A mathematical theory of communication. Bell Syst Tech J 27:379–423CrossRef
    Valentin EK (2001) SWOT analysis from a resource-based view. J Mark Theory Pract 9(2):54–68CrossRef
    Wang X, Triantaphyllou E (2008) Ranking irregularities when evaluating alternatives by using some ELECTRE methods. Omega 36:45–63CrossRef
    Weihrich H (1982) The TOWS matrix-a tool for situational analysis. Long Range Plan 15(2):54–66CrossRef
    Xie C, Dong D, Hua S, Xu X, Chen Y (2012) Safety evaluation of smart grid based on AHP-entropy method. Syst Eng Procedia 4:203–209CrossRef
    Yan G, Xu J (2013) The feature and inherent law of the development of rural drinking water supply in China. China Rural Water Hydropower 3:1–4 (In Chinese)
    Yüksel I, Dagdeviren M (2007) Using the analytic network process (ANP) in a SWOT analysis—a case study for a textile firm. Inf Sci 177:3364–3382CrossRef
    Zhang Y, Xu J (2013) The analysis of the operation of rural centralized drinking water supply project based on the balance between income and expenditure. China Rural Water Hydropower 2:55–57 (In Chinese)
    Zou Z, Yun Y, Sun J (2006) Entropy method for determination of weight of evaluating in fuzzy synthetic evaluation for water quality assessment indicators. J Environ Sci 18(5):1020–1023CrossRef
  • 作者单位:Jia Xu (1) (2)
    Ping Feng (1)
    Peng Yang (2)

    1. School of Civil Engineering, Tianjin University, Tianjin, 300072, China
    2. China Irrigation and Drainage Development Center (Center for Rural Drinking Water Safety, MWR), Beijing, 100054, China
  • 刊物类别:Earth and Environmental Science
  • 刊物主题:None Assigned
  • 出版者:Springer Berlin Heidelberg
  • ISSN:1866-6299
文摘
China will complete the construction of the rural drinking water supply (RDWS) before 2015 and more than 508 million rural residents have gained benefits in the past 9 years. As the application of RDWS becomes more and more significant for the living environment and the social stability, a strategic plan is desperately needed for the development of China’s RDWS. In this paper, a quantitative SWOT (strengths, weaknesses, opportunities, and threats) analysis framework is proposed using the TOPSIS method combined with Analytic Hierarchy Process (AHP) and Shannon’s Entropy. An integrated model of SWOT–TOPSIS method is developed, presenting an effective tool for the development strategy research of China’s RDWS. To further illustrate the utility of the model, a case study of Hebei Province of China is proposed and the development strategy is suggested.

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700