| 电网技术 2009, 33(6) 67-71 DOI: ISSN: 1000-3673 CN: 11-2410/TM | |||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
| 本期目录 | 下期目录 | 过刊浏览 | 高级检索 [打印本页] [关闭] | |||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
| 电力市场 |
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| 电力市场环境下含风电机组的环境经济调度模型及其仿真 | |||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
| 袁铁江1,晁勤1,吐尔逊×伊不拉音1,童菲2 | |||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
| 1.新疆大学 电气工程学院,新疆维吾尔族自治区 乌鲁木齐市 830008;2.中国华为技术有限公司,广东省 深圳市 518000 | |||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
| 摘要:
电力市场环境下的传统经济调度不考虑环境补偿因素。文章在传统经济调度的基础上,考虑各机组和各种能源的环境成本,提出了火电机组名义环境补偿成本,用电方不需实际支付费用,发电方排污特性越好,火电机组的名义环境补偿成本越低;同时考虑了风电备用容量补偿成本,反映风电接入系统后火电热备用容量的变化;建立了电力市场环境下含风电机组的环境经济调度模型。基于Matlab优化工具箱,对一个包含2个火电机组和1个风电机组的系统进行优化仿真,结果表明:基于所提出的模型,环境友好的发电机组或能源将获得更大的调度权重。 | |||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
| 关键词: 电力市场 经济调度 名义环境补偿成本 备用成本 风电容量 | |||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
| An Environmental/Economic Dispatch Model for Power Grid Containing Wind Power Generation Units and Its Simulation in Electricity Market Environment | |||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
| YUAN Tie-jiang1,CHAO Qin1,TUERXUN Yibulayin1,TONG Fei2 | |||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
| 1.School of Electrical Engineering,Xinjiang University,Urumqi 830008,Xinjiang Uygur Autonomous Region,China;2.China’s Huawei Technology Co., Ltd.,Shenzhen 518000,Guangdong Province,China | |||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
| Abstract:
Traditional economic dispatch in electricity market environment does not take environmental compensation factors into account. On the basis of traditional economic dispatch and considering the environmental costs of units and various energy sources, a concept of nominal environmental compensation cost of thermal power generation units, to which the power consumers should not pay the charges practically, is proposed. The better the pollution emission characteristic of power plant, the lower the nominal environmental compensation cost of thermal power generation unit is; meanwhile, the reserve capacity compensation cost of wind power generation units are considered to reflect the variation of thermal reserve capacity; and an environmental/economic dispatch model for power gird containing wind power generation units in electricity market environment is built. Using optimization toolbox of Matlab, the optimization simulation of a power system consisting of two thermal power generation units and one wind power generation unit is performed, and the results show that according to the proposed model the environment-friendly generation unit or energy source will hold larger dispatch weight. | |||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
| Keywords: electricity market economic dispatch nominal environmental compensation cost reserve cost wind power capacity | |||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
| 收稿日期 2008-11-13 修回日期 1900-01-01 网络版发布日期 | |||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
| DOI: | |||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
| 基金项目:
基金项目:国家自然科学基金资助项目(50667002);新疆教育厅重点项目(XJEDU2005I01)。 | |||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
| 通讯作者: 袁铁江 | |||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
| 作者简介: | |||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
| 作者Email: ytjysr01@163.com | |||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
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| 参考文献: | |||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
| [1] 李渝,范高锋,李庆,等.达坂城风电接入系统对新疆电网电能质量的影响[J].电网技术,2007,31(6):88-92. Li Yu,Fan Gaofeng,Li Qing,et al.The impact of Dabancheng wind farm integration on power quality of Xinjiang power grid[J].Power System Technology,2007,31(6):88-92(in Chinese). [2] 席皛,李海燕,孔庆东.风电场投切对地区电网电压的影响[J].电网技术,2008,32(10):58-62. Xi Xiao,Li Haiyan,Kong Qingdong.Influence of connecting and disconnecting wind farm with regional power network on voltage of the latter[J].Power System Technology,2008,32(10):58-62(in Chinese). [3] 迟永宁,刘燕华,王伟胜,等.风电接入对电力系统的影响[J].电网技术,2007,31(3):77-81. Chi Yongning,Liu Yanhua,Wang Weisheng,et al.Study on impact of wind power integration on power system[J].Power System Technology,2007,31(3):77-81(in Chinese). [4] 孙元章,吴俊,李国杰.风力发电对电力系统的影响[J].电网技术,2007,31(20):55-62. Sun Yuanzhang,Wu Jun,Li Guojie.Influence research of wind power generation on power systems[J].Power System Technology,2007,31(20):55-62(in Chinese). [5] 戴慧珠,王伟胜,迟永宁.风电场接入电力系统研究的新进展[J].电网技术,2007,31(20):16-23. Dai Huizhu,Wang Weisheng,Chi Yongning.Recent wind power integration study in China[J].Power System Technology,2007,31(20):16-23(in Chinese). [6] 雷亚洲,王伟胜,印永华,等.一种静态安全约束下确定电力系统风电准入功率极限的优化方法[J].中国电机工程学报,2001,21(6):25-29. Lei Yazhou,Wang Weisheng,Yin Yonghua,et al.An optimization method for determining wind power penetration limit power system under static security constraints[J].Proceedings of the CSEE,2001,21(6):25-29(in Chinese). [7] 陈树勇,戴慧珠,白晓民,等.风电场的发电可靠性模型及应用[J].中国电机工程学报,2000,20(3):26-28. Chen Shuyong,Dai Huizhu,Bai Xiaomin,et al.Reliability model of wind power plants and its application[J].Proceedings of the CSEE,2000,20(3):26-28(in Chinese). [8] 郑国强,鲍海,陈树勇.基于近似线性规划的风电场穿透功率极限的优化算法[J].中国电机工程学报,2004,24(10):68-71. Zheng Guoqiang,Bao Hai,Chen Shuyong.Amending algorithm for wind farm penetration optimization based approximate linear programming method[J].Proceedings of the CSEE,2004,24(10):68-71(in Chinese). [9] 申洪,梁军,戴慧珠.基于电力系统暂态稳定分析的风电场穿透功率极限计算[J].电网技术,2002,26(8):8-11. Shen Hong,Liang Jun,Dai Huizhu.Calculation of wind farm penetration based on power system transient stability analysis [J].Power System Technology,2002,26(8):8-11(in Chinese). [10] 吴俊玲,周双喜,孙建锋,等.并网风力发电的最大注入功率分析[J].电网技术,2004,28(20):28-32. Wu Junling,Zhou Shuangxi,Sun Jianfeng,et al.Analysis on maximum power injection of wind power resource[J].Power System Technology,2004,28(20):28-32(in Chinese). [11] 雷亚洲,王伟胜,印永华,等.风电对电力系统运行的价值分析[J].电网技术,2002,26(5):10-14. Lei Yazhou,Wang Weisheng,Yin Yonghua,et al.Analysis of wind power value to power system operation[J].Power System Technology,2002,26(5):10-14(in Chinese). [12] 周双喜,王海超,陈寿孙.风力发电运行价值分析[J].电网技术,2006,30(14):99-104. Zhou Shuangxi,Wang Haichao,Chen Shousun.Analysis on operation value of wind power resources[J].Power System Technology,2006,30(14):99-104(in Chinese). [13] 杨校生.给风电一个合理价格[J].中国电力管理,2004(10):22-24. Yang Jiaosheng.To wind power at a reasonable price[J].China Power Management,2004(10):22-24(in Chinese). [14] Hetzer J,Yu D C,Bhattarai K.An economic dispatch model incorporating wind power[J].IEEE Trans on Energy Conversion,2008,23(2):603-611. [15] Mahdad B,Bouktir T,Srairi K.Fuzzy controlled genetic algorithm for environmental/economic dispatch with shunt facts devices[J].IEEE Trans on Energy Conversion,1997,12(2):148-155. [16] Chen Chun-Lung,Lee Tsung-Ying.Impact analysis of transmission capacity constraints on wind power penetration and production cost in generation dispatch[C].IEEE International Conference on Intelligent Systems Applications to Power Systems,Taiwan,2007. [17] Makarov Y V,Loutan C,Jian Ma,et al.Impacts of integration of wind generation on regulation and load following requirements of California power systems[J].The 5th International Conference on European Electricity Market,Lisboa,2008. [18] Agrawal S,Panigrahi B K,Tiwar M K.Multiobjective particle swarm algorithm with fuzzy clustering for electrical power dispatch[J].IEEE Trans on Evolutionary Computation,2008,12(5):529-541. [19] 杜松怀,温步瀛,蒋传文.电力市场[M].北京:中国电力出版社,2004:96. [20] Roy S.Market constrained optimal planning for wind energy conversion Systems over multiple installation sites[J].IEEE Trans on Energy Conversion,2002,17(1):124-129. [21] Chen Chun-Lung.Optimal wind thermal generating unit commitment [J].IEEE Trans on Power Systems,2001,16(4):273-280. [22] Chen Chun-Lung,Chen Nanming.Direct search method for solving economic dispatch problem considering transmission capacity constraints [J].IEEE Trans on Power Systems,2001,16(4):764-769. | |||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
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