...
首页> 外文期刊>Journal of Water Resources Planning and Management >Multiobjective and Joint Operation Model for Multistakeholder Cascade Hydropower System
【24h】

Multiobjective and Joint Operation Model for Multistakeholder Cascade Hydropower System

机译:多利用人级联水电系统多目标和联合操作模型

获取原文
获取原文并翻译 | 示例
           

摘要

Involvement in the operation of a multiobjective and multistakeholder hydropower system requires balancing conflicting objectives and coordinating economic gains to achieve a win-win situation through joint operation. This study developed integrated models of multiobjective joint optimization and synergistic revenue allocation of multistakeholders to resolve conflicts. The multiobjective operation model coupled with the technique for order preference by similarity to ideal solution method determines a noninferior solution for compromising social (water delivery and flood control), and economic (energy production) objectives with the incorporation of the decision makers' preference. Thereafter, a novel synergistic revenue allocation method based on the total differential equation (SRA-TD) is proposed. This method is used to systematically decompose the contribution of each stakeholder (reservoir) in the synergistic revenue through cooperation, thereby satisfying the principles of efficiency, rationality, and equity. The integrated models are applied to a hypothetical multistakeholder cascade hydropower system. Results are as follows: (1) The compromise solution selected from the multiobjective optimization operation results increases the firm water supply but reduces the energy production revenue without increasing flood storage compared with the benchmark solution (status quo). (2) The SRA-TD method decomposes the synergistic revenue contribution of each reservoir during each period and verifies its physical generation mechanism, thereby satisfying the basic principles of synergistic revenue allocation. (3) Last, the SRA-TD method comprehensively considers the dynamic effects of inflow conditions, reservoir characteristics, and topological structures of a reservoir system. The proposed method provides a viable alternative for promoting joint optimal operations in a multiobjective and multistakeholder cascade reservoir system.
机译:参与多目标和多利益相关方水电系统的运作需要平衡相互矛盾的目标和协调经济增益,通过联合行动来实现双赢的情况。本研究开发了多目标联合优化的综合模型,以及多利益相关者的协同收入分配以解决冲突。通过相似性与理想解决方法的相似性耦合的多目标操作模型决定了用于妥协社会(水交付和防洪),以及通过纳入决策者的偏好的经济(能源生产)目标的非资料解决方案。此后,提出了一种基于总差分方程(SRA-TD)的新型协同收入分配方法。该方法用于通过合作系统地将每个利益相关者(水库)在协同收入中的贡献,从而满足效率,理性和公平的原则。集成模型应用于假设的多利益相关方级联水电系统。结果如下:(1)从多目标优化运行结果中选择的折衷解决方案增加了坚固的供水,但与基准解决方案(现状)相比,在不增加洪水储存的情况下降低了能源生产收入。 (2)SRA-TD方法在每个时期内分解每个水库的协同收入贡献,并验证其体力产生机制,从而满足协同税收分配的基本原则。 (3)最后,SRA-TD方法全面考虑流入条件,储层特性和储层系统拓扑结构的动态效应。该方法提供了一种可行的替代方案,用于促进多目标和多利益相关方级联水库系统中的关节最佳操作。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号