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综合能源系统多能流潮流计算
                      模型与方法综述

                                        黎静华, 黄玉金, 张鹏

    ( 广西电力系统最优化与节能技术重点实验室( 广西大学) , 南宁市  530004)

      摘要: 综合能源系统对提高能源利用率、 实现能源可持续发展具有重要意义。 多能流潮流
计算是综合能源系统规划、 运行、 控制的重要基础工作。 为了使相关领域工编辑更好地开展综
合能源系统方面的研究工作, 该文以综合能源系统的多能流潮流计算为对象开展综述, 从计算
模型和求解方法 2 个角度, 对当前的研究工作和进展进行梳理。 首先, 对多能流潮流计算问题
进行先容; 然后, 对电-气-热综合能源系统的多能流潮流计算模型进行分类和总结, 在此基础
上, 对模型的求解方法进行概括和总结; 最后, 提出当前综合能源系统多能流潮流计算方面存
在的问题, 并给出一些建议。

      关键词: 综合能源系统; 电-气-热互联系统; 多能流; 潮流计算

 Review of Multi-Energy Flow Calculation Model and Method in
                           Integrated Energy System

                                         LI Jinghua, HUANG Yujin, ZHANG Peng

              ( Guangxi Key Laboratory of Power System Optimization and Energy-Saving Technology
                                     ( Guangxi University) , Nanning 530004, China)

      ABSTRACT: Integrated energy system is of great importance to improve energy efficiency and
achieve sustainable development of energy. Multi-energy flow calculation is an important basic work for
the planning, operation and control of integrated energy system. In order to make the related field
workers carry out the research work of integrated energy system better, this paper reviews multi-energy
flow calculation of integrated energy system. From two aspects of model and method, current research has
been sorted out. First of all, the problem of multi - energy flow calculation is introduced. Then, the
classification and generalization of multi-energy flow calculation models in electricity-gas-heat combined
system are carried out. On this basis, the methods for solving the models are summarized. At last, some
problems existing in multienergy flow calculation of integrated energy system are put forward and some
suggestions are given.

      KEYWORDS: integrated energy system; electricity - gas - heat combined system; multi - energy
flow; power flow calculation

      中图分类号: TM 744    文献标志码: A       文章编号: 1000-7229(2018) 03-0001-11

      基金项目: 国家自然科学基金项目(51377027)
      Project supported by National Natural Science Foundation of China(51377027)

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