Optimizing Parallel Pumping Station Operations in an Open-Channel Water Transfer System Using an Efficient Hybrid Algorithm

被引:20
作者
Feng, Xiaoli [1 ]
Qiu, Baoyun [1 ]
Wang, Yongxing [1 ]
机构
[1] Yangzhou Univ, Sch Elect Energy & Power Engn, Yangzhou 225127, Jiangsu, Peoples R China
基金
中国国家自然科学基金;
关键词
parallel pumping stations; open-channel water transfer system; optimizing operation; discharge distribution; hybrid algorithm; energy savings; EAST ROUTE; OPTIMIZATION;
D O I
10.3390/en13184626
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
This article presents a methodology for optimizing the operation of parallel pumping stations in an open-channel water transfer system. A mathematical model was established for the minimum power with constraints on water level, flow rate and pump unit performance, and related factors. In the objective function, energy consumption of relevant equipment or facilities, such as main pump units, power transmission and transformation equipment, and auxiliary equipment, was considered comprehensively. The model was decomposed to two layers for solving. In the first layer, by using discharge distribution ratio as a variable, the flow rate and water level of the two water channels could be determined by employing the dichotomy approach (DA), and were calculated according to the principle of energy conservation, considering energy loss caused by hydraulic leakage and evaporation losses. In the second layer, the number of running pumps and the flow rate of a single pump were obtained by simulated annealing-particle swarm optimization (SA-PSO). The hybrid of the two algorithms is called the dichotomy approach-simulated annealing-particle swarm optimization (DA-SA-PSO). To verify the efficiency and validity of DA-SA-PSO, SA-PSO is also applied to determine discharge distribution ratio. The results indicate that the computation time using DA-SA-PSO is 1/30 of that using double-layer SA-PSO (dSA-PSO). Compared with the original plan, the optimal solution could result in power savings of 14-35%. Thus, the DA-SA-PSO is highly efficient for optimizing system operation in real time.
引用
收藏
页数:19
相关论文
共 29 条
[1]  
Abkenar SMS, 2015, SUSTAIN COMPUT-INFOR, V8, P18, DOI [10.1016/j.suscom.2014.09.003, 10.1016/j.suscom.2015.09.003]
[2]   An algorithm for minimization of pumping costs in water distribution systems using a novel approach to pump scheduling [J].
Bagirov, A. M. ;
Barton, A. F. ;
Mala-Jetmarova, H. ;
Al Nuaimat, A. ;
Ahmed, S. T. ;
Sultanova, N. ;
Yearwood, J. .
MATHEMATICAL AND COMPUTER MODELLING, 2013, 57 (3-4) :873-886
[3]   Pumping pattern optimization in order to reduce WDS operation costs [J].
Bohorquez, Jessica ;
Saldarriaga, Juan ;
Vallejo, Daniel .
COMPUTING AND CONTROL FOR THE WATER INDUSTRY (CCWI2015): SHARING THE BEST PRACTICE IN WATER MANAGEMENT, 2015, 119 :1069-1077
[4]  
Charles T. J., 2008, P PIP C 2008 PIP ASS, P1
[5]   Boosting Genetic Algorithm Performance in Pump Scheduling Problems with a Novel Decision-Variable Representation [J].
Cimorelli, Luigi ;
D'Aniello, Andrea ;
Cozzolino, Luca .
JOURNAL OF WATER RESOURCES PLANNING AND MANAGEMENT, 2020, 146 (05)
[6]   A Reservoir Operation Policy Using Inter-Basin Water Transfer for Maximizing Hydroelectric Benefits in Brazil [J].
de Aragao, Anderson Passos ;
Leite Asano, Patricia Teixeira ;
Lira Rabelo, Ricardo de Andrade .
ENERGIES, 2020, 13 (10)
[7]   Data-Driven Solution for Optimal Pumping Units Scheduling of Smart Water Conservancy [J].
Dong, Wei ;
Yang, Qiang .
IEEE INTERNET OF THINGS JOURNAL, 2020, 7 (03) :1919-1926
[8]  
Eberhart RC, 2000, IEEE C EVOL COMPUTAT, P84, DOI 10.1109/CEC.2000.870279
[9]  
Feng X L, 2011, J DRAINAGE IRRIGATIO, V29, P127
[10]   Optimal Operation for Baoying Pumping Station in East Route Project of South-to-North Water Transfer [J].
Feng Xiaoli ;
Qiu Baoyun ;
Cao Haihong ;
Wei Qianglin ;
Teng Haibo .
CHINESE JOURNAL OF MECHANICAL ENGINEERING, 2009, 22 (01) :78-83