Xiong Ning,Cheng Haozhong,Yao Liangzhong,et al. Investigation on limit surfaces in space spanned by generation parameter[J]. IEEE Trans. on Power Systems, 2010,25(3):1309-1318.
[2]
Rosehart W D,Canizares C A,Quintana V H. Multi-objective optimal power flows to evaluate voltage security costs in power networks[J]. IEEE Trans. on Power Systems, 2003,18(2):578-587.
[3]
陈启鑫,康重庆,夏清,等. 电力行业低碳化的关键要素分析及其对电源规划的影响[J]. 电力系统自动化, 2009,33(15):18-23. Chen Qixin,Kang Chongqing,Xia Qing,et al.Key low carbon factors in the evolution of power decarbonisation and their impact on generation expansion planning[J].Automation of Electric Power Systems,2009,33(15)
[4]
IPCC. Special report on carbon dioxide capture and storage[R]. Cambridge, UK:Cambridge University Press,2005.
[5]
康重庆,陈启鑫,夏清. 应用于电力系统的碳捕集技术及其带来的变革[J]. 电力系统自动化, 2010,34(1):1-7. Kang Chongqing,Chen Qixin,Xia Qing.Innovation incurred by carbon capture technologies utilized in power system[J].Automation of Electric Power Systems,2010,34(1)
[6]
Rubin E S,Chen C,Rao A B. Cost and performance of fossil fuel power plants with CO2 capture and storage[J]. Energy Policy, 2007,35(9):4444-4454.
[7]
Rezvani S,Huang Y,Wright D M. Comparative assessment of coal fired IGCC systems with CO2 capture using physical absorption,membrane reactors and chemical looping[J]. Fuel, 2009,88(12):2463-2472.
[8]
Viebahn P,Nitsch J,Fischedick M,et al. Comparison of carbon capture and storage with renewable energy technologies regarding structural,economic and ecological aspects in Germany[J]. International Journal of Greenhouse Gas Control, 2007,1(1):121-133.
[9]
卢志刚,祁艳君,杨俊强,等. 碳捕集系统在火电厂中的优化配置[J]. 电力系统自动化, 2011,4(10):34-37. Lu Zhiqiang,Qi Yanjun,Yang Junqiang,et al.Optimal allocation of carbon capture systems in power plants[J].Automation of electric power systems,2011,4(10)
[10]
陈启鑫,周天睿,康重庆,等. 节能发电调度的低碳化效益评估模型及其应用[J]. 电力系统自动化, 2009,33(16):24-29. Chen Qixin,Zhou Tianrui,Kang Chongqing,et al.Assessment model of low-carbon effect and its application to energy conservation based generation dispatching[J].Automation of Electric Power Systems,2009,33(16)
[11]
陈启鑫,康重庆,夏清. 低碳电力调度方式及其决策模型[J]. 电力系统自动化, 2010,34(12):18-23. Chen Qixin,Kang Chongqing,Xia Qing.Mechanism and modeling approach to low-carbon power dispatch[J].Automation of Electric Power Systems,2010,34(12)
[12]
陈启鑫,康重庆,夏清. 碳捕集电厂的运行机制研究与调峰效益分析[J]. 中国电机工程学报, 2010,30(7):22-28. Chen Qixin,Kang Chongqing,Xia Qing.Operation mechanism and peak-load shaving effects of carbon- capture power plants[J].Proceedings of the CSEE,2010,30(7)
[13]
Lucquiaud M,Chalmers H,Gibbins J. Potential for flexible operation of pulverised coal power plants with CO2 capture[J]. Energy Materials, 2007,2(3):175-180.
[14]
黄斌,许世森,郜时旺. 华能北京热电厂CO2捕集工业试验研究[J]. 中国电机工程学报, 2009,29(17):14-20. Huang Bin,Xu Shisen,Gao Shiwang.Industrial test of CO2 capture in Huaneng Beijing Coal-fired Power System[J].Proceedings of the CSEE,2009,29(17)
[15]
张晓花,赵晋泉,陈星莺. 节能减下含风电场多目标机组组合建模及优化[J]. 电力系统保护与控制, 2011,39(17):33-39. Zhang Xiaohua,Zhao Jinquan,Chen Xingying.Multi-objective unit commitment modeling and optimization for energy-saving and emission reduction in wind power integrated system[J].Power System Protection and Control,2011,39(17)
[16]
熊宁,程浩忠,马则良,等. 基于连续潮流的极限诱导分岔检查方法[J]. 电力系统自动化, 2008,32(18):35-38. Xiong Ning,Cheng Haozhong,Ma Zeliang,et al.A method for detecting limit induced bifurcation based on CPF[J].Automation of Electric Power Systems,2008,32(18)
[17]
胡泽春,王锡凡,程浩忠. 最近电压稳定临界点的两层规划模型和信赖域算法[J]. 中国电机工程学报, 2008,28(1):6-11. Hu Zechun,Wang Xifan,Cheng Haozhong.A bilevel programming formulation and trust region approach for closest critical point of voltage stability[J].Proceedings of the CSEE,2008,28(1)