综合智慧能源

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能源岛多能互补自适应变步长SMPC分层优化调度研究

李阔, 唐洋, 黄浩城, 邵贤杰, 郝静静, 尹高俊, 魏赏赏   

  1. 中电建新能源集团股份有限公司, 北京 100101 中国
    河海大学新能源学院, 江苏 213200 中国
    国家风力发电技术创新中心(河海大学), 江苏 213200 中国
  • 收稿日期:2025-07-22 修回日期:2025-08-04
  • 基金资助:
    省碳达峰碳中和科技创新专项资金-竞争择优项目(BT024004); 青年科学基金项目(52406233); 博士后面上项目(2024M750738); 常州市科技计划项目(525011412)

Research on Hierarchical Optimal Scheduling of Multi-energy Complementary Adaptive Variable Step-size SMPC for Energy Island

  1. , 100101, China
    , 213200, China
  • Received:2025-07-22 Revised:2025-08-04

摘要: 本文基于多目标分层优化求解方法,兼顾系统平衡与调度经济性,构建海上能源岛多能互补系统分层协同优化模型。为解决风光波动性和随机性对能源岛系统调度的影响,采用随机模型预测控制(Stochastic Model Predictive Control,SMPC)方法对海上能源岛调度进行优化求解。本文创新提出一种自适应变步长随机模型预测控制的调度方法,该方法在SMPC滚动优化环节,通过偏差参考系数,追踪实时的调度偏差程度,改变滚动优化步长,解决了传统的随机模型预测控制调度方法在滚动优化环节调度精度缺失、陷入局部优化的问题,兼顾了调度精确性和全局性。仿真结果表明该方法可有效提升调度精度,缩短计算时间。

关键词: 分层优化, 海上能源岛, 多能互补系统, 自适应变步长, 随机模型预测控制

Abstract: Based on a multi-objective hierarchical optimization solution method, this paper constructs a hierarchical collaborative optimization model for the multi-energy complementary system of an offshore energy island, considering both system balance and scheduling economy. To address the impact of the volatility and randomness of wind and solar energy on the scheduling of the energy island system, the Stochastic Model Predictive Control (SMPC) method is adopted to optimize the scheduling of the offshore energy island. This paper innovatively proposes a scheduling method of adaptive variable step-size stochastic model predictive control. In the rolling optimization link of SMPC, this method tracks the real-time scheduling deviation degree through a deviation reference coefficient and changes the rolling optimization step-size, solving the problems of scheduling accuracy loss and local optimization in the rolling optimization link of the traditional stochastic model predictive control scheduling method, and balancing scheduling accuracy and globality. The simulation results show that this method can effectively improve scheduling accuracy and shorten calculation time.

Key words: Hierarchical optimization, Offshore energy island, Multi - energy complementary system, Adaptive variable step-size, Stochastic model predictive control