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Multi-Reservoir Flood Control Operation Using Improved Bald Eagle Search Algorithm with ε Constraint Method

delete2023-02-09
delete14
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OA
AI
王文川 (Wenchuan Wang) *
W
Wei-can Tian
C
Chau, Kwok-wing
H
Hong-fei Zang
M
Mingwei Ma
Z
Zhong-kai Feng
D
Dongmei Xu
DOI:10.3390/w15040692delete
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摘要

摘要

En 中文
The reservoir flood control operation problem has the characteristics of multiconstraint, high-dimension, nonlinearity, and being difficult to solve. In order to better solve this problem, this paper proposes an improved bald eagle search algorithm (CABES) coupled with epsilon-constraint method (epsilon-CABES). In order to test the performance of the CABES algorithm, a typical test function is used to simulate and verify CABES. The results are compared with the bald eagle algorithm and particle swarm optimization algorithm to verify its superiority. In order to further test the rationality and effectiveness of the CABES method, two single reservoirs and a multi-reservoir system are selected for flood control operation, and the epsilon constraint method and the penalty function method (CF-CABES) are compared, respectively. Results show that peak clipping rates of epsilon-CABES and CF-CABES are both 60.28% for Shafan Reservoir and 52.03% for Dahuofang Reservoir, respectively. When solving the multi-reservoir joint flood control operation system, only epsilon-CABES flood control operation is successful, and the peak clipping rate is 51.76%. Therefore, in the single-reservoir flood control operation, the penalty function method and the epsilon constraint method have similar effects. However, in multi-reservoir operation, the epsilon constraint method is better than the penalty function method. In summary, the epsilon-CABES algorithm is more reliable and effective, which provides a new method for solving the joint flood control scheduling problem of large reservoirs.
Keyword:
flood control operation
bald eagle search algorithm
multi-reservoir
epsilon constraint method
penalty function method

期刊

W
Water
IF:
3
论文数:
3.2W
被引数:
7.4W

机构

H
Hohai University
学者数:
2.3W
论文数: 1.8W
被引数: 2.1W
H
hong kong polytechnic university
学者数:
3.0W
论文数: 4.1W
被引数: 921
N
north china university of water resources & electric power
学者数:
4.0K
论文数: 2.8K
被引数: 1
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