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城市污水处理企业最佳效率组合 被引量:4

The Best Efficiency Combination of Urban Sewage Treatment Plants
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摘要 城市污水处理企业最佳效率组合模型是环境规划中一种广泛应用的模型。为解决传统优化算法无法有效求解该模型的问题,提出一种基于引力搜索算法和序列二次规划的求解算法。将算法用于浑河沈阳段污水处理企业效率模型优化设计,研究结果表明:本文算法给出的方案,在保证污水处理效果的同时大幅度降低了污水处理成本,为求解城市污水处理企业最佳效率组合模型提供了可行有效的方法。 The best efficiency combination model of urban sewage treatment plants is a widely used model in environmental planning. Traditional optimization algorithms cannot solve the model effectively. In this paper, a method based on gravitational search algorithm and sequential quadratic programming is proposed. The presented method is applied in the efficiency model of urban sewage treatment plants in Hunhe river section in Shenyang city. The results show that the effect of sewage treatment is guaranteed and the cost of sewage treatment is greatly reduced by the scheme generated by the proposed algorithm. This paper provides a feasible and effective method for solving the best efficiency model of urban sewage treatment plants.
作者 刘勇 马良
出处 《系统管理学报》 CSSCI 2013年第3期437-440,共4页 Journal of Systems & Management
基金 国家自然科学基金资助项目(70871081) 上海市一流学科建设项目(S1201YLXK)
关键词 效率组合 引力搜索算法 序列二次规划 优化 efficiency combination gravitational search algorithm sequential quadratic programming optimization
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参考文献10

  • 1魏一鸣,吴刚,刘兰翠,范英.能源-经济-环境复杂系统建模与应用进展[J].管理学报,2005,2(2):159-170. 被引量:74
  • 2李寿德,胡越峰,顾孟迪,尹海涛.基于排污权交易的环境政策对厂商污染治理技术进步的激励分析[J].系统管理学报,2010,19(5):491-496. 被引量:11
  • 3郭怀成,尚金城,张天柱.环境规划学[M].北京:高等教育出版社,2009.
  • 4Rashedi E,Nezamabadi-pour H,Saryazdi S. GSA: Agravitational search algorithm [J]. Information Science,2009’ 179(13): 2232-2248.
  • 5Rashedi E, Nezamabadi-pour H, Saryazdi S. BGSA:Binary gravitational search algorithm [ J ]. NaturalComputing, 2010,9(3) : 727-745.
  • 6Precup R E, David R C, Petriu E M,et al.Gravitational search algorithm-based tuning of fuzzycontrol systems with a reduced parametric sensitivity^].Advances in Intelligent and Soft Computing,2011, 96:141-150.
  • 7Chatterjee A, Mahanti G K. Design of fully digitalcontrolled reconfigurable dual-beam concentric ring arrayantenna using GSA [ J ]. Progress In ElectromagneticResearch C,2011,18 : 59-72.
  • 8Boggs P T, Tolle J W. Sequential quadraticprogramming[J]. Acta Numerical, 1995(4) : 1-51.
  • 9Michael B B. Sequential quadratic programming [J ].Springer Optimization and Its Application,2008, 19:1-14.
  • 10王烨,潘俊,王志新,胡桂玲,高艳艳.浑河沈阳段污水排放口最优规划研究[J].环境科学与管理,2008,33(9):68-70. 被引量:3

二级参考文献101

  • 1熊德琪,陈守煜,任洁.水环境污染系统规划的模糊非线性规划模型[J].水利学报,1994,26(12):22-30. 被引量:20
  • 2肖冬荣.系统控制论[M].武汉:武汉工业大学出版社,1997..
  • 3[88]Patrick Criqui,Silvana Mima. The EU Tradable Emission Per-mit System: Some Policy Issues Identified with the POLES-ASPEN Model[R]. Institut d'Economie et de Politique de l'Energie CNRS-Université Pierre Mendès-France, 2001.
  • 4[89]P Capros, MIDAS, http://www.worldbank.org/html/fpd/em/power/EA/methods/istmidas.stm[EB]. 2004-09
  • 5[90]P Capros, P Karadeloglou, G Mentzas,et al.Short and Medium-term Modeling and Problems of Models Linkage[J]. Energy, 1990, 15(3-4): 301~324
  • 6[91]P Carpos, P Karadeloglou, G N Mentzas. Energy Policy Extensions of KLE Ased Macroeconomic Models[J]. Journal of Policy Modeling, 1989, 11(4): 507~530
  • 7[92]Energy Modelling, http://www.worldenergyoutlook.org/modelling.asp[EB]. 2004-09
  • 8[93]EC: E3ME, An Energy-Environment-Economy Model for Europe[R]. Joule II Programme, EUR 16715 EN, Brussels, Belgium, September 1995.
  • 9[94]Frederic H MurphyJohn J Conti, Susan H ShawReginald Sanders. Modeling and Forecasting Energy Markets with the Intermediate Future Forecasting System[J]. Mathematical and Computer Modelling, 1989, 12 (9): 1189~1190
  • 10[95]Fujii Y, K Yamaji. Assessment of Technological Options in the Global Energy System for Limiting the Atmospheric CO2 Concentration[R]. Japan, 1997.

共引文献87

同被引文献20

  • 1张杰,李碧清,李继祥,高洁.我国城市污水处理与利用对策研究[J].湖南科技大学学报(自然科学版),2004,19(2):80-83. 被引量:13
  • 2高琴,张辉国,安哲,朱斌.基于DEA分析的乌鲁木齐市污水处理厂规模技术有效性研究[J].新疆大学学报(自然科学版),2006,23(2):211-215. 被引量:12
  • 3Hern6ndez-Sancho F, Molinos-Senante M, Sala-Garrido R. Energy Efficiency in Spanish Wastewater Treatment Plants: A Non-radial DEA Approach [J]. Science of the Total Environment, 2011, 409 (14) : 2693 -2699.
  • 4Silva C, Quadros S, Ramalho P, et al. Translating Removal Efficiencies into Operational Performance Indices of Wastewater Treatment Plants [ J ]. Water Research, 2014 (57): 202-214.
  • 5Tsui M P, Leung H W, Lam P K S, et al. Seasonal Occurrence, Removal Efficiencies and Preliminary Risk Assessment of Multiple Classes of Or- ganic U. Filters in Wastewater Treatment Plants [ J. Water Research, 2014 (53) : 58 -67.
  • 6Abbott M, Cohen B, Wang W C. The Performance of the Urban Water and Wastewater Sectors in Australia [J]. Utilities Policy, 2012, 20 ( 1 ) : 52 - 63.
  • 7Hernandez-Sancho F, Sala-Garrido R. Technical Efficiency and Cost Analysis in Wastewater Treatment Processes: A DEA Approach [ J ]. Desalina- tion, 2009, 249 (1): 230-234.
  • 8Cooper W W, Seiford L M, Zhu J. Data Envelopment Analysis: Models and Interpretations [ M ]. Boston: Kluwer Academic Publisher, 2004.
  • 9Herrala E M, Huotari H, Haapasalo H. Governance of Finnish Waterworks-A DEA Comparison of Selected Models [J]. Utilities Policy.'2012 (20) : 64 -70.
  • 10王树东,董蕾,刘旭东,张东.OPC技术在城市污水处理中的应用[J].自动化仪表,2010,31(5):52-54. 被引量:3

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