系统仿真学报 ›› 2025, Vol. 37 ›› Issue (5): 1103-1115.doi: 10.16182/j.issn1004731x.joss.24-0701

• 专栏:双碳目标下的新型能源与交通系统仿真技术 •    下一篇

综合能源数模混合暂稳态一体化仿真系统设计与实现

何桂雄1, 贾晓强1, 董树锋2, 韩永禄3, 陈永华4, 郑一鸣2   

  1. 1.中国电力科学研究院,北京 100192
    2.浙江大学,浙江 杭州 310000
    3.国网河北省电力有限公司营销服务中心,河北 石家庄 050000
    4.南瑞集团有限公司研究院,江苏 南京 211106
  • 收稿日期:2024-07-02 修回日期:2024-09-02 出版日期:2025-05-20 发布日期:2025-05-23
  • 第一作者简介:何桂雄(1984-),男,正高级工程师,博士,研究方向为负荷管理、综合能源与电氢耦合新技术。
  • 基金资助:
    国家重点研发计划(2023YFB4005905);国家自然科学基金(51937005)

Design and Realization of Integrated Energy System Dynamic Stability Simulation and Steady-state Simulation System

He Guixiong1, Jia Xiaoqiang1, Dong Shufeng2, Han Yonglu3, Chen Yonghua4, Zheng Yiming2   

  1. 1.China Electric Power Research Institute, Beijing 100192, China
    2.Zhejiang University, Hangzhou 310000, China
    3.State Grid Hebei Electric Power Co. , LTD. Marketing Service Center, Nanjing 050000, China
    4.Nanrui Group Research Institute, Nanjing 211106, China
  • Received:2024-07-02 Revised:2024-09-02 Online:2025-05-20 Published:2025-05-23

摘要:

随着“碳达峰、碳中和”目标的提出,综合能源系统正经历重大改革。研究数模混合暂稳态仿真方法,应对能流优化和规划优化中的挑战。开发的综合能源仿真平台集物理模拟、数字仿真、实物验证于一体,基于模块化原则,包含综合能源模型库、能流优化、建模管理、实时仿真和监控模块,实现了暂稳态仿真,提升了系统运行安全性、稳定性和经济性。设计了平台的功能和物理架构,分析了各模块主要功能,建立了动态和稳态模型库,研发了一体化仿真系统,对园区级场景进行仿真,验证了算例系统模型的有效性。

关键词: 综合能源, 数模混合, 仿真平台, 能流优化, 通讯接口, 在线接入

Abstract:

Aiming forcarbon peakandcarbon neutrality,the energy sector is undergoing significant reform. To address energy flow and planning optimization in integrated energy systems, a comprehensive simulation platform is developed. This platform combines physical and digital simulations with real-world validation and is modular in design, It includes an integrated energy model library, energy flow optimization, modeling management, real-time simulation, and energy monitoring. The platform enhances system safety, stability, and economic efficiency, While also improving planning and energy management. The paper analyzes the platform′s functional and physical architecture, introduces key modules, establishes dynamic and steady-state model libraries, and optimizes energy flow using multi-objective particle swarm optimization. Simulations conducted for typical campus scenarios validate the system model′s effectiveness.

Key words: integrated energy, digital-physical hybrid, simulation platform, energy flow optimization, communication interface, online access

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