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Optimization of the Open Degree of Key Valves Based on Relative Entropy and Pipeline Leakage

Optimization of the Open Degree of Key Valves Based on Relative Entropy and Pipeline Leakage
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摘要 Based on information entropy theory, the definition of relative entropy, and the relative entropy minimum principle, this study establishes a multi-objective optimization model for a key valve opening of an urban water distribution network (WDN). Each node pressure is taken as the main research object to reduce pipeline leakage. Moreover, genetic algorithm is applied in the proposed model to solve the key valve opening of the actual WDN in a city in southern China. Using the proposed model, the relevant decision variables of a WDN can be optimized to provide a new manner of network dispatching. © 2017, Tianjin University and Springer-Verlag GmbH Germany. Based on information entropy theory, the definition of relative entropy, and the relative entropy minimum principle, this study establishes a multi-objective optimization model for a key valve opening of an urban water distribution network(WDN). Each node pressure is taken as the main research object to reduce pipeline leakage. Moreover, genetic algorithm is applied in the proposed model to solve the key valve opening of the actual WDN in a city in southern China. Using the proposed model, the relevant decision variables of a WDN can be optimized to provide a new manner of network dispatching.
出处 《Transactions of Tianjin University》 EI CAS 2017年第5期471-478,共8页 天津大学学报(英文版)
基金 supported by the National Natural Science Foundation of China (No. 51178141) National Major Science and Technology Program for Water Pollution Control and Treatment (2012ZX07408-002-004-002)
关键词 Electric load dispatching Genetic algorithms OPTIMIZATION Pipelines Water distribution systems Water supply systems Relative entropy Pipeline leakage Open degree of key valves Multi-objective optimization Genetic algorithm
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