Research on water resources operation of cascade reservoirs in the Aojiang River Basin based on multi-objective optimization
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(1.College of Civil Engineering, Fuzhou University; 2.Fujian Provincial Water Conservancy Planning Institute)

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    Abstract:

    To address the multi-objective coordination problem of water supply, power generation, and ecological targets in the Huokou-Shanzai cascade reservoir system of the Aojiang River Basin, this study proposed a multi-objective non-inferior solution set optimization method based on the improved NSGA-Ⅲ algorithm. By constructing a decision-making strategy that integrates the two-layer reference point method and the boundary weighting approach, this method achieves the scientific selection of the non-inferior solution set. Based on this method, a multi-objective operation model for the cascade reservoir system in the Aojiang River Basin was established and compared with single-objective operation models. The results indicate that the multi-objective operation model effectively addresses the challenge of exponential growth in reference points under high-dimensional objectives. Compared to single-objective (power generation, water supply, or ecology) operation models, the multi-objective operation model maintains a certain level of power generation while significantly reducing the probability of water supply shortages, eliminating ecological water deficits, and substantially decreasing spillage. The multi-objective operation model effectively balances the risks among power generation, water supply, and ecological goals, demonstrating its comprehensive optimization advantages under complex constraints.

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翁硕,林明财,林建锋,等.基于多目标优化的敖江流域梯级水库水资源调度研究[J].水利水电科技进展,2026,46(2):46-54, 62.(Weng Shuo, Lin Mingcai, Lin Jianfeng, et al. Research on water resources operation of cascade reservoirs in the Aojiang River Basin based on multi-objective optimization[J]. Advances in Science and Technology of Water Resources,2026,46(2):46-54, 62.(in Chinese))

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History
  • Received:December 09,2024
  • Revised:
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  • Online: April 14,2026
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