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2000年及以前发表论文

作者:SGO数据组;审核:SGO数据组 ;发布:SGO数据组发表时间:2018-04-15本文访问量:

[1] Q. Liu and S. Cheng, “Object-Oriented Methods Drive Protective Relay System,” IEEE Computer Applications in Power, vol. 13, no. 1, pp. 33–37, Jan. 2000.



[2] J. Wen, S. Cheng, O. Malik, “A Synchronous Generator Fuzzy Excitation Controller Optimally Designed with a Genetic Algorithm,” IEEE Transactions on Power Systems, vol. 13, no. 3, pp. 884–889, Aug. 1998.


[3] Y. J. Cao, Q. H. Wu, L. Jiang, et al. Nonlinear control of power system multi-mode oscillations. International Journal of Electrical Power and Energy System, 20(1)(1998): 61-68.


[4] Q. H. Wu, Y. J. Cao, J. Y. Wen, Optimal Reactive Power Dispatch Using an Adaptive Genetic Algorithm[J], International Journal of Electrical Power & Energy Systems, 1998, 20(8): 563-569


[5] Shijie Cheng, Rujing Zhou, Lin Guan. An on-line self-learning power system stabilizer using a neural network method. IEEE Transactions on Power Systems, 12(2)(1997):926-931.


[6] L. Guan, S. Cheng, R. Zhou. Artificial neural network power system stabiliser trained with an improved BP algorithm. IEE Proceedings: Generation, Transmission and Distribution, 143(2)(1996):135-141.


[7] Y. J. Cao, Q. H. Wu, S. J. Cheng. An Improved Lyapunov function for power system stability analysis. International Journal of Control, 65(5)(1996):791-802.


[8] Yijia Cao, Lin Jiang, Shijie Cheng et al. A nonlinear variable structure stabilizer for power system stability. IEEE Transactions on Energy Conversion, 9(3)(1994):489-495.


[9] O. P. Malik, G. S. Hope, S. J. Cheng. Some issues on the practical use of recursive least squares identification in self-tuning control. International Journal of Control, 53(5)(1991):1021-1033.


[10] S. J. Cheng, O. P. Malik, G. S. Hope. A Data base management system and its application in a voltage and reactive power control expert system. Electric Power Systems Research, 16(2)(1989):147-155.


[11] S. J. Cheng, O. P. Malik, G. S. Hope. Damping of multi-modal oscillations in power systems using a dual-rate adaptive stabilizer. IEEE Transactions on Power Systems, 3(1)(1988):101-108.


[12] S. Cheng, O. P. Malik, G. S. Hope. ANALYSIS OF A VARIABLE POLE-SHIFTING SELF-TUNING STABILIZER. RGE, Revue Generale de l'Electricite, (6)(1987):27-34.


[13] S. J. Cheng, O. P. Malik, G. S. Hope. An Expert system for voltage and reactive power control of a power system. IEEE Transactions on Power Systems, 3(4)(1988):1449-1455.


[14] O. P. Malik, G. S. Hope, S. J. Cheng et al. A multi-microcomputer based dual-rate self-tuning power system stabilizer. IEEE Transactions on Energy Conversion, 2(3)(1987):355-360.


[15] S. Cheng, O. P. Malik, G. S. Hope. ANALYSIS OF A VARIABLE POLE-SHIFTING SELF-TUNING STABILIZER. RGE, Revue Generale de l'Electricite, (6)(1987):27-34.


[16] S. Cheng, Y. S. Chow, O. P. Malik et al. “ADAPTIVE SYNCHRONOUS MACHINE STABILIZER,” IEEE Transactions on Power Systems, vol. 1, no. 3, pp. 101–109, 1986.


[17] S. Cheng, O. P. Malik, G. S. Hope. SELF-TUNING STABILIZER FOR A MULTIMACHINE POWER SYSTEM. IEE Proceedings, Part C: Generation, Transmission and Distribution, 133(4)(1986): 176-185.


[18] 文劲宇*,江振华,姜 霞,程时杰,杨文祥,黄金明. 基于遗传算法的无功优化在鄂州电网中的实现[J]. 电力系统自动化,2000,24(2): 45-47.


[19] 谭振宇,程时杰,魏 璇,李 江,文劲宇*. 基于神经网络的自适应电力系统稳定器[J]. 电力系统自动化,2000,24(15): 1-5.


[20] 李必涛,文劲宇*,姜霞,程时杰,易永辉,张望. 基于DSP的智能型电力监测仪的研究[J]. 继电器,2000,28(2): 33-36.


[21] 裴志宏,文劲宇*,张克元,TSC 型无功静止补偿装置非同期投切对继电保护的影响分析[J]. 继电器,2000,28(1): 10-12.


[22] 姜霞,文劲宇*,何海波,熊惠,李必涛,程时杰. 实时多任务电能质量监测软件的研究与实现[J]. 继电器,2000,28(3): 33-35.


[23] 文劲宇*,刘洪光. 电力系统电压失稳过程仿真分析[J]. 电力情报,2000(02): 26-29.


[24] 苗世洪,王少荣,刘沛,等. 基于GPS的电网状态监测系统的设计与实现[J]. 电力系统自动化. 2000(12): 52-54.


[25] 李艳韩,程时杰. 超导磁储能系统(SMES)在高压输电中的应用[J]. 高电压技术. 2000(05): 53-55.


[26] 苗世洪,王少荣,刘沛,等. 坝内式水电厂GPS信号接收的方案设计与实现[J]. 水力发电. 2000(04): 41-42.


[27] 苗世洪,王少荣,刘沛,等. 智能装置通信协议转换器的设计与实现[J]. 自动化仪表. 2000(05): 27-28.


[28] 林湘宁,刘沛,程时杰. 超高压输电线路故障性质的复值小波识别[J]. 中国电机工程学报. 2000(02): 34-39.


[29] 林湘宁,刘沛,程时杰. 电力系统振荡中轻微故障识别的小波算法研究[J]. 中国电机工程学报. 2000(03): 40-45.


[30] 江振华,程时杰,傅予力,等. 含有可控串联补偿电容的电力系统次同步谐振研究[J]. 中国电机工程学报. 2000, 20(6): 47-52.


[31] 姜霞,J. Nguimbis,程时杰. 低压配电网载波通信噪声特性研究[J]. 中国电机工程学报. 2000(11): 31-36.


[32] 苗世洪,王少荣,刘沛,等. 一种基于GPS的时间同步装置[J]. 电子计算机与外部设备. 2000(01): 15-16.


[33] 苗世洪,王少荣,刘沛,等. 微机与GPS-20板的通信问题研究[J]. 电子计算机与外部设备. 2000(04): 43-44.


[34] 唐跃进,李敬东,段献忠,等. 21世纪电力工业的一个重要发展方向——超导电力技术[J]. 中国工程科学. 2000(04): 1-7.


[35] 苗世洪,王少荣,刘沛,等. 单片机与MODEM接口技术及其在智能仪器中的应用研究[J]. 工业控制计算机. 2000(02): 45-46.


[36] 唐跃进,李敬东,段献忠,等. 超导电力科学技术——发展中的新学科和新技术[J]. 科技导报. 2000(04): 27-30.


[37] 文劲宇*,程时杰,基于遗传算法的模糊式电力系统稳定器自寻优设计法[J],电工技术学报,1999,14(4): 21-26


[38] 文劲宇*,程时杰,吴青华,利用就地测量量进行负荷静态等效的新算法[J].中国电机工程学报,1999,19(10): 17-21


[39] 文劲宇*,王国兴,程时杰等,用遗传算法设计模糊式电力系统稳定器[J],电力系统自动化,1999,23(4): 22-24.


[40] 苗世洪,王少荣,刘沛,等. 电能抄表系统远程通信的实现[J]. 电测与仪表. 1999(06): 41-42.


[41] 李妍,程时杰. 电压稳定极限附近神经网络模拟及静态稳定裕度判定[J]. 电力系统自动化. 1999(21): 37-40.


[42] 江振华,程时杰. 基于开关逻辑的电力系统图形和操作票自动生成系统[J]. 电力自动化设备. 1999(03): 14-17.


[43] 王少荣,程时杰,田莉芬,等. 基于可视化网络的防误操作系统[J]. 继电器. 1999(02): 29-31.


[44] 苗世洪,王少荣,刘沛,等. 利用双口RAM实现主机与远方多个子机的实时数据交换问题研究[J]. 计算机工程与应用. 1999(11): 120-121.


[45] 林湘宁,刘沛,程时杰. 基于小波包变换的变压器励磁涌流识别新方法[J]. 中国电机工程学报. 1999(08): 15-19.


[46] 王少荣,孙海顺,苗世洪,等. 同步发电机功角高精度测量方法及其实现[J]. 中国机械工程. 1999(06): 75-78.


[47] 文劲宇*,程时杰,基于遗传算法的发电机模糊式综合励磁控制器的研究[J],中国电机工程学报,1998,18(2): 91-95.


[48] 唐涛南,魏守平,程时杰,等. 发电机非线性励磁连续变结构控制器的研究[J]. 电工技术学报. 1998(05): 21-25.


[49] 陈华元,彭晓兰,程时杰. 自学习神经模糊负荷频率控制器的研究[J]. 电力系统自动化. 1998(06): 24-27.


[50] 毛晓明,刘沛,程时杰. 利用单侧电量的高压输电线路故障测距算法研究[J]. 电网技术. 1998(11): 17-19.


[51] 刘青,程时杰. 分布式问题求解系统及其在电力系统中的应用[J]. 电力系统自动化. 1997(01): 54-57.


[37] 吴俊勇,陈晓华,汪馥英,等. 复杂电力系统发电机轴系扭振特性的快速计算[J]. 电力系统自动化. 1997(04): 9-11.


[52] 刘青,彭晓兰,程时杰,等. 面向对象的电力系统专家系统设计[J]. 电力系统自动化. 1997(05): 36-39.


[53] 唐涛南,魏守平,程时杰,等. 水电站 AGC 执行机构控制策略的研究[J]. 电力系统自动化. 1997(05): 52-55.


[54] 曹一家,王春林,程时杰. 电力系统静态稳定概率计算的几种新方法[J]. 电力系统自动化. 1997(06): 13-18.


[55] 吴俊勇,程时杰,陈德树. 用李雅普诺夫函数法判定汽轮发电机组轴系扭振的稳定性[J]. 电力系统自动化. 1997(07): 42-44.


[56] 吴俊勇,肖东晖,程时杰,等. 特征结构分析及在电力系统次同步谐振研究中的应用[J]. 电力系统自动化. 1997(11): 1-3.


[57] 刘青,田莉芬,彭晓兰,等. 一个用于支持电网调度管理多专家系统联合决策的分布式数据库系统[J]. 电网技术. 1997(01): 41-43.


[58] 田莉芬,王少荣,刘青,等. 一种基于面向对象的图形生成与管理系统[J]. 计算机工程与应用. 1997(09): 66-69.


[59] 刘青,文劲宇*,刘沛,程时杰,用于继电器装置的智能检测分析系统研究与实现[J],计算机应用研究,1997, (2): 66-67


[60] 文劲宇*,刘青,刘沛,程时杰,变电所二次设备微机全自动在线检测软件的研究[J],电网技术,1997, 21(1): 52-54.


[61] 文劲宇*,刘沛,程时杰,遗传算法及其在电力系统中的应用(上)[J],电力系统自动化,1996,20(10): 57-60


[62] 文劲宇*,刘沛,程时杰,遗传算法及其在电力系统中的应用(下)[J],电力系统自动化,1996,20(11): 60-65


[63] 吴俊勇,程时杰. 具有直流输电的电力系统次同步谐振的研究[J]. 电力系统自动化. 1996(11): 11-14.


[64] 管霖,程时杰,陈德树. 神经网络电力系统稳定器的设计与实现[J]. 中国电机工程学报. 1996(06): 384-387.


[65] 蒋林,曹一家,程时杰. 应用非线性控制理论抑制电力系统多模振荡的研究[J]. 电力系统自动化. 1995(02): 5-11.

[66] 胡帆,刘沛,程时杰. 高压输电线路故障测距算法仿真研究[J]. 中国电机工程学报. 1995(01): 67-72.


[67] 彭晓兰,程时杰,陈德树. 电力系统中的分布式智能决策支持系统[J]. 电力系统及其自动化学报. 1995(01): 16-21.


[68] 文劲宇*,刘沛,程时杰等,国产电气化铁路变电所亭二次设备检测车[J],电力自动化设备,1995,15(4): 52-54.


[69] 赵松利,曹一家,程时杰,等. 电力系统电压稳定问题综述(一)[J]. 电力系统自动化. 1994(06): 66-70.


[70] 管霖,彭晓兰,程时杰,等. 一个用于电力系统专家系统的结构数据库及其管理系统[J]. 电网技术. 1993(03): 39-43.


[71] 彭晓兰,管霖,程时杰,等. 一个实用于电力系统的多功能分层专家系统[J]. 电力系统自动化. 1993(06): 13-18.

[72] 曹一家,蒋林,程时杰,等. 基于不精确模型的同步电机非线性励磁控制[J]. 电力系统自动化. 1993(11): 34-40.


[73] 赵松利,刘洪光,程时杰,等. 一种电力系统潮流多解算法[J]. 电力系统及其自动化学报. 1993(01): 75-82.


[74] 赵松利,程时杰,陈德树,文劲宇*,电力系统电压稳定极限的模型和算法[J],电力系统及其自动化学报,1993年第2期.


[75] 赵松利,程时杰,陈德树,文劲宇*,电力系统—对相关邻近潮流解算法[J],电力系统及其自动化学报,1993年第2期.


[76] 凌峰,彭晓兰,程时杰,等. 基于神经网络的电力系统故障处理器[J]. 电力系统及其自动化学报. 1992(02): 45-50.


[77] 吴俊勇,程时杰,陈德树. 电力系统次同步振荡和轴系扭振研究的现状及发展方向[J]. 电力系统自动化. 1991(Z1): 75-79.


[78] X. Lin, P. Liu, and S. Cheng, “Effective Transmission Line Fault Detection during Power Swing with Wavelet Transform,” 2000 IEEE Power Engineering Society Winter Meeting, vol. 3, pp. 1950–1955.


[79] S. Zheng, Y. Tan, S. Cheng, and Y. Zhu, “Dynamic Characteristic Study of UPFC Based on a Detailed Simulation Model,” 2000 IEEE Power Engineering Society Winter Meeting, vol. 2, pp. 1360–1364.


[80] S. Miao,S. Wang,P. Liu,S. Cheng.” Study of Communication between Microcomputer and GPS- 20” Computer and Peripherals, vol. 24, no. 4, pp. 43-44, 2000.


[81] Xianguing Liu, Pei Liu, Shijie Cheng. A wavelet transform based scheme for power transformer inrush identification. 2000 IEEE Power Engineering Society Winter Meeting. Singapore.


[82] J. Nguimbisl, X. Jiang, S.J. Cheng, “Noise Characteristics Investigation and Utilization in Low Voltage Powerline Communication”, Jan. 23-27, 2000, IEEE PES 2000 Winter Meeting, Singapore.


[83] J. Wen, Q. Wu, D. Shimmin, D. Turner, S. Cheng, “Population-diversity Based Genetic Algorithm for Fuzzy Control of Synchronous Generators,” Proceedings of the 1999 IEEE Symposium on Computer Aided Control System Design, Hawaii, USA, 23-26 August 1999, pp. 504–509.


[84] J. Y. Wen, Q. H. Wu, D. W. Shimmin, Shimmin, D.W., Turner, D.R., Cheng, S. J. . Population diversity based genetic algorithm for fuzzy control of synchronous generators. Proceedings of the 1999 IEEE International Symposium on Computer Aided Control System Design; Kohala Coat-Island, HI, USA.


[85] Jinyu Wen, Shaorong Wang, Shijie Cheng et al. Measurement based power system load modeling using a population diversity genetic algorithm. 1998,Proceedings of Powercon '98; Beijing, China.


[86] Qing Liu, Shijie Cheng. An object-oriented expert system for power system protective relay operation and management.1998, Proceedings of Powercon '98; Beijing, China.


[87] J. Wen, S. Cheng, O. P. Malik. Synchronous generator fuzzy excitation controller optimally designed with a genetic algorithm. Proceedings of the 1997 20th IEEE International Conference on Power Industry Computer Applications; Columbus, OH, USA.


[88] J. Y. Wen, S. J. Cheng, R. J. Zhou. Design of an optimal fuzzy power system stabilizer using genetic algorithm.1997, 3rd International Power Engineering Conference; Singapore: Nanyang Technol. Univ.


[89] Liu Qing, Peng Xiaolan, Cheng Shijie. A distributed database system for multiple expert systems used for power system.1997,3rd International Power Engineering Conference; Singapore: Nanyang Technol. Univ.


[90] J. Wen, S. Cheng, and O. P. Malik, “A Synchronous Generator Fuzzy Excitation Controller Optimally Designed with a Genetic Algorithm,” 1997 20th International Conference on Power Industry Computer Applications, pp. 106–111.


[91] J. Wen, S. Cheng, and O. Malik, “Design of an Optimal Fuzzy Power System Stabilizer Using Genetic Algorithm,” Proceedings of the Inter. Power Engineering Conf. (IPEC’97), vol. 1, Singapore, 1997, pp. 106–111.


[92] Y. J. Cao, Q. H. Wu, S. J. Cheng. Probabilistic analysis of power system dynamic stability. 1996. Power Systems Computation Conference; Dresden, Germany.


[93] J. Wen, Y. Tang, S. Cheng, and P. Liu, “A Digital Simulator for Protective Relay Testing,” Proceedings of the 1995 1st International Conference on Digital Power System Simulators, ICDS'95, Texas, USA, April 5-7 1995, pp. 381–383.


[94] J. Y. Wen, Y. Z. Tang, P. Liu, Cheng, S.J.. Digital simulator for protective relay testing. Proceedings of the 1995 1st International Conference on Digital Power System Simulators; College Station, TX, USA.


[95] Y. J. Cao, S. J. Cheng, Q. H. Wu. Sliding mode control of nonlinear systems using neural network.1994. Proceedings of the International Conference on CONTROL '94. Coventry, UK.


[96] Y. Cao, S. Cheng, and Q. Wu, “Sliding Mode Control of Nonlinear Systems Using Neural Network,” 1994 International Conference on Control, vol. 1, pp. 855–859.


[97] S. Zhao, H. Liu, S. Cheng, and D. Chen, “New Method for Calculating Power System Multiple Load Flow Solutions,” Proceedings of the 2nd International Conference on Advances in Power System Control, Operation & Management, vol. 1, no. 388, pp. 274–278, 1994.


[98] Junyong Wu, Shijie Cheng, Deshu Chen. Detailed transient simulation of an integrated AC/DC power system. IPEC '93. International Power Engineering Conference 1993. Singapore: Nanyang Technol. Univ


[99] Songli Zhao, Hongguang Liu, Shijie Cheng et al. A new method for calculating power system multiple load flow solutions. APSCOM'93 - 2nd International Conference on Advances in Power Systems Control, Operation and Management; Hong Kong.


[100] Songli Zhao, Shijie Cheng, Deshu Chen. Stability analysis of power systems with the consideration of automatic voltage regulators and speed governors. IPEC '93. International Power Engineering Conference 1993. Singapore: Nanyang Technol. Univ.


[101] Yijia Cao, Lin Jiang, Shijie Cheng et al. A robust variable structure power system stabilizer. IPEC '93. International Power Engineering Conference 1993. Singapore: Nanyang Technol. Univ.


[102] Z. G. Chen, S. J. Cheng, H. J. Hu. A fuzzy power system stabilizer. IPEC '93. International Power Engineering Conference 1993. Singapore: Nanyang Technol. Univ.


[103] X. L. Peng, L. Guan, S. J. Cheng et al. Intelligent management of a multi-functional expert system in power system. IPEC '93. International Power Engineering Conference 1993.Singapore: Nanyang Technol. Univ.


[104] L. Guan, X. L. Peng, S. J. Cheng et al. An online power system expert system used database and its intelligent management system. IPEC '93. International Power Engineering Conference 1993. Singapore: Nanyang Technol. Univ.


[105] Y.J.Cao, S.J.Cheng and D.S.Chen, “Effect of Colored Noise in Load on Power System Stability Index”, 1993, International Power System Conference, Singapore.


[106] Y.J.Cao, S.J.Cheng and D.S.Chen, “A Probabilistic Criterion for Power System Dynamic Stability”, 1993, International Power System Conference, Singapore.


[107] S.L.Zhao, S.J.Cheng and D.S.Chen, “Study of a Power System Flow Scheme, Part I: Solution Existence”, 1993, International Power System Conference, Singapore


[108] S.L.Zhao, S.J.Cheng and D.S.Chen, “Study of a Power System Flow Scheme, Part II: Steady State Stability”, 1993, International Power System Conference, Singapore.1992


[109] Peng Xiao Lan, Cheng Shijie, “An Expert System for Power System Overhauling Management”, 1992,International Symposium on Multidisciplines, (ISMD), Wuhan.


[110] Zhao Songli, Cheng Shijie, “A New Fast Method for Transient Stability Assessment of Power Systems by Catastrophe Theory”, 1992, International Symposium on Multidisciplines, (ISMD), Wuhan.


[111] Wu Junyong, Cheng Shijie, “A New Approach to the Simulation of the Turbo-generator Shaft Torsional Vibrations”, 1992, International Symposium on Engineering Mathematics and Applications (ISEMA’92), Shenzhen, China.


[112] S. J. Cheng, D. S. Chen, X. L. Peng. An expert system for a thermal power station alarm processing. APSCOM-91. 1991 International Conference on Advances in Power System Control, Operation and Management; Hong Kong.


[113] J.H.Yan, D.Q.Zhang, S.J.Cheng and H.J.Hu, “A Fast Transient Stability Control Based on the Pattern Recognition and Load Measurements”, 1991, International Conference on Power System Technology, Beijing, China.


[114] S.L.Zhao, S.J.Cheng and D.S.Chen, “Catastrophe Theory Application to Voltage Stability Analysis of Power System”, 1991, International Conference on Power System Technology, Beijing, China.


[115] S. J. Cheng, O. P. Malik, G. S. Hope. Performance of an adaptive power system stabilizer in a multi-machine system. 1989, Automation and Instrumentation for Power Plants. Bangalore, India: Pergamon.


[116] S.J.Cheng, O.P.Malik and G.S.Hope, “Control of Sub-synchronous Resonance in Power System Using a Self-tuning Control”, 1988, IFAC CSEE International Symposium of Engineering Mathematics & Application, Beijing, China.


[117] S. J. Cheng, O. P. Malik, G. S. Hope. EXPERT SYSTEM SHELL FOR CONTROL OF A LARGE INTER-CONNECTED SYSTEM.1987, MONTECH 87: Electrotechnologies Conference Proceedings; Montreal, Que, Can.


[118] S. J. Cheng, O. P. Malik, G. S. Hope. DAMPING OF MULTI-MODAL OSCILLATIONS IN POWER SYSTEMS USING A DUAL-RATE ADAPTIVE STABILIZER. IEEE/PES 1987 Winter Meeting. New Orleans, LA, USA.


[119] N. C. Pahalawaththa, S. J. Cheng, O. P. Malik et al. A self-tuning power system stabilizer. 1987. Automatic Control - World Congress. Munich, West Germany.


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