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考虑随机波动性可再生能源的传统电源灵活性分析 被引量:15

Flexibility Analysis of Conventional Generation with Random Fluctuation Renewable Energy
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摘要 灵活性反映电力系统在一定时间尺度下响应供需两端变化的能力,研究灵活性对分析可再生能源接入问题有重要的意义,因此需要分析可再生能源与传统电源之间的制约关系。根据传统电源爬坡率的特点,提出机组灵活性和电力系统传统电源灵活性的量化指标,利用蒙特卡罗模拟的方法给出相应的计算流程。相比其他灵活性指标,所提灵活性指标能够评价机组灵活性的高低,表征各机组对传统电源灵活性的贡献,同时,还可计算出系统消纳可再生能源发电的能力。最后以IEEE-9机57节点系统为例,计算所提灵活性指标,得到机组灵活性的高低和消纳可再生能源的能力。结果表明所提指标是准确有效的。 Flexibility reflects the ability of dealing with change of supply and demand in power system under a certain time scale. Flexibility study has a great significance on the analysis of renewable energy access problem. So it is needed to analyze the restrictive relationship between renewable energy and conventional generation. According to the characteristics of the ramping rate,this paper proposes the quantitative indices of the unit flexibility and the conventional generation flexibility of power system,and presents the corresponding calculation processes by Monte Carlo algorithm. Compared with other flexibility indices,the proposed flexibility indices can evaluate the flexibility of every conventional unit in power system and analyze the contribution of each one to conventional generation in the face of flexibility. Meanwhile,the ability of absorbing renewable energy also can be calculated. Finally,we take the IEEE 9-generator and 57-bus system as an example to calculate the proposed flexibility indices,and obtain the flexibility of unit and the ability of absorbing renewable energy of power system. The results show that the proposed indices are accurate and effective.
作者 王颖 林酉阔 兰晓明 赵洪山 WANG Ying LIN Youkuo LAN Xiaoming ZHAO Hongshan(Economic Research Institute, State Grid Hebei Electric Power Company, Shijiazhuang 050021, China School of Electrical & Electronic Engineering, North China Electric Power University, Baoding 071003, Hebei Province, China)
出处 《电力建设》 北大核心 2017年第1期131-137,共7页 Electric Power Construction
基金 国家自然科学基金项目(51077053)~~
关键词 灵活性指标 波动率 爬坡率 消纳能力 flexibility indices fluctuating rate ramping rate absorptive ability
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  • 1杨秀媛,肖洋,陈树勇.风电场风速和发电功率预测研究[J].中国电机工程学报,2005,25(11):1-5. 被引量:584
  • 2迟永宁,刘燕华,王伟胜,陈默子,戴慧珠.风电接入对电力系统的影响[J].电网技术,2007,31(3):77-81. 被引量:499
  • 3EirOrid. EirGrid Grid Code (Version 3.3)[S]. Ireland, 2009.
  • 4ESBNG. Wind farm connection requirements[S]. Ireland, 2006.
  • 5Spanish Renewable Energy Association. The new payment mechanism of RES-E in Spain[R]. Spain: Spanish Renewable Energy Association, 2005.
  • 6Giebel G. The state-of-the-art in short-term prediction of wind power: A literature overview[R]. Danmark: risoe, 2006.
  • 7Dragoon K, Kirby B, Milligan M. Do wind forecasts make good generation schedules?[R]. Cole, Colorado: NREL, 2008.
  • 8Landberg L, Giebel G. Short-term prediction: An overview[J]. Wind Energy, 2003(6): 273-280.
  • 9Giebel G, Landberg L, Kariniotakis G, et al. State-of-the-art on methods and software tools for short-term prediction of wind energy production[C]. Proceedings of the 2003 European Wind Energy Association Conference, Madrid, Spain, 2003.
  • 10Anrneos. Anmeos Project[R/OL]. [2010-04-02]. http://anemos.cma.fr.

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