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文章摘要
考虑P2G的多能源系统优化运行研究*
Research on optimal operation of multi-energy system considering P2G
Received:March 16, 2018  Revised:March 16, 2018
DOI:
中文关键词: 多能源系统  能源中心  P2G设备  分段弃风惩罚因子
英文关键词: multi-energy  system, energy  hub, P2G  equipment, segmental  penalty factor
基金项目:国网科技项目“全球能源互联网实验研究平台”
Author NameAffiliationE-mail
Tang Chuntong* Shanghai University of Electric Power,Institute of Electric Engineering tangchuntong.ok@163.com 
Li Xiaolu Shanghai University of Electric Power,Institute of Electric Engineering 715107708@qq.com 
Shan Fuzhou Shanghai University of Electric Power,Institute of Electric Engineering 125896458@qq.com 
Song Yanmin 无 5869236544@qq.com 
Zhou Haiming 无 854963215@qq.com 
Liu Chaoqun 无 574632514@qq.com 
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中文摘要:
      电转气技术(P2G)的出现给多能源系统中风电消纳问题带来了新的解决方案,而目前P2G设备的运行成本的高昂又与实现充分的弃风消纳存在矛盾。基于此,文中在考虑P2G设备运行成本的基础上,提出了一种计及分段弃风成本的多能源优化运行模型。首先,本文基于能源中心的概念,分析了包含P2G设备等多种能源转换装置在内的多能源系统模型。以能源系统供能成本最小为目标函数,并在目标函数中考虑了计及分段弃风惩罚因子的风电弃风成本,采用变惯性权重w的粒子群算法进行求解,对24h时间段内多场景下系统风电消纳情况、系统供能成本变化进行分析。结果表明,多能源系统中利用P2G设备可以提高风电利用效率,减少系统供能成本,综合效益显著。
英文摘要:
      The development of power to gas (P2G) technique provided a new solution for wind power accommodation in multi-energy system. Besides, the high operation cost of P2G equipment contradicted the realization of adequate abandonment of wind power. Based on this, this paper proposed a multi-energy optimal operation model that took into account the cost of segmental wind power curtailment on the basis of P2G equipment operation cost. Firstly, given concept of energy hub, the multi-energy system model that including a variety of energy conversion devices such as P2G equipment is analysed. Secondly, this paper took the minimum supply cost of energy system as the objective function, which included the cost of wind curtailment considering the segmental penalty factor. The particle swarm optimization algorithm with variable inertia weight was used to solve the model. Finally, this paper analysed the wind power consumption and system energy supply cost changes in 24 hours under multiple scenarios. the result shows that the use of P2G equipment in multi-energy system can improve the efficiency of wind power utilization, reduce the cost of system energy supply, and achieve significant comprehensive benefits.
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