吉林大学学报(信息科学版) ›› 2026, Vol. 44 ›› Issue (4): 808-815.

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基于IGAN-IChOA的主动配电网源储双层优化配置

任 爽, 郭钰婷, 何明晨, 吕鑫康   

  1. 东北石油大学 电气信息工程学院, 黑龙江 大庆 163318
  • 收稿日期:2025-06-20 出版日期:2026-08-06 发布日期:2026-08-06
  • 作者简介:任爽(1979— ), 女, 吉林榆树人, 东北石油大学副教授, 硕士生导师, 主要从事电力系统及其自动化研究, (Tel)86- 13945968670(E-mail)rensh-2009@ 163. com
  • 基金资助:
    东北石油大学科研基金资助项目(2019YDL-10)

Bi-Level Planning of Distributed Energy Storage Systems in Active Grids Enabled by IGAN-IChOA Synergy

REN Shuang, GUO Yuting, HE Mingchen, Lü Xinkang   

  1. School of Electrical and Information Engineering, Northeast Petroleum University, Daqing 163318, China
  • Received:2025-06-20 Online:2026-08-06 Published:2026-08-06

摘要:

针对风光出力随机性与分布式电源(DG: Distributed Generation)高渗透率并网对电网的冲击, 融合改进生成对抗网络 ( IGAN: Improved Generative Adversarial Network) 和改进黑猩猩优化算法 ( IChOA: Improved Chimpanzee Optimization Algorithm), 构建主动配电网源储双层优化配置模型。首先, 采用 IGAN 生成风光典型出力场景表征其不确定性, 进而构建含电压质量指标的源储双层优化架构: 上层由 IChOA 优化确定储能系统(ESS: Energy Storage Systems)与 DG 的容量及位置配置方案, 下层采用二阶锥规划( SOCP: Second-Order Cone Programming)求解储能最优日内调度策略。最后, 经 IEEE33节点系统验证表明, 该协同策略可显著降低系统年化成本与网损, 改善电压水平, 有效规避电压越限和 DG 功率波动问题。

关键词:

Abstract:

In response to the impact of the randomness of wind and solar power generation and the high penetration rate of DG ( Distributed Generation ) on the grid, the IGAN ( Improved Generative Adversarial Network) and the IChOA( Improved Chimpanzee Optimization Algorithm) are integrated to construct a source-storage two-layer optimal configuration model for active distribution networks. Firstly, IGAN is used to generate typical wind and solar power generation scenarios to represent their uncertainty. Then, a source-storage two-layer optimization architecture containing voltage quality indicators is constructed. The upper layer uses IChOA to optimize the capacity and location configuration schemes of ESS(Energy Storage Systems) and DG, and the lower layer uses SOCP ( Second-Order Cone Programming) to solve the optimal daily dispatch strategy of energy
storage. Finally, the IEEE 33-node system verification shows that this collaborative strategy can significantly reduce the annualized cost and network loss of the system, improve the voltage level, and effectively avoid voltage limit violations and DG power fluctuations.

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中图分类号: 

  • TP18