代表性论著:
[1] 郑涛、王增平、翁汉琍,等.《超/特高压变压器差动保护关键技术与新原理》 科学出版社 2017
代表性论文:
[1] ZHENG Tao, LIU Xiaoxiao, HUANG Ting. Novel protection schemes against turn-to-turn fault of magnetically controlled shunt reactor based on equivalent leakage inductance[J]. International Journal of Electrical Power and Energy Systems, vol. 112, pp. 442-451, Nov. 2019. (SCI 收录)
[2] ZHENG Tao, LIU Xiaoxiao, WEI Junqi, et al. Protection Scheme for Turn-to-turn Faults of Magnetically Controlled Shunt Reactor Based on Waveform Similarity Comparison[J]. Electric Power System Research, vol. 177, 105980, Dec. 2019. (SCI 收录)
[3] ZHENG Tao, LIU Xiaoxiao. A Novel Protection Scheme against Turn-to-turn Fault of MCSR Based on Equivalent Magnetizing Inductance[J]. International Journal of Electrical Power and Energy Systems. vol. 117, 105629, May 2020. (SCI 收录)
[4] Zheng Tao,Xiaoxiao Liu ,Geye Lu ,Xin Hu, Adaptive algorithm for identifying OLTC position and its application on UHV voltage‐regulating transformer differential protection, Electrical Energy Systems, 2018, 28(4):e2518. (SCI收录)
[5] Zheng, T, Zhang FF, Liu XX, Huang T, Khan MA, Protection Schemes for Turn-to-Turn Faults Within Control Windings of TCT-CSR and Impacts of Power Regulation, International Journal of Electrical Power and Energy Systems,2018,97: 275-281(SCI收录)
[6] T.Zheng, J.Gu, S.F.Huang, F.Guo, and V.Terzija, A new algorithm to avoid maloperation of transformer differential protection in substations with an inner bridge ,IEEE transactions on power delivery,July 2012, volume 27, number 3,1178-1185(SCI收录)
[7] Zheng T, Chen P L, Qi Z, et al. A Novel Algorithm to Avoid the Maloperation of UHV Voltage-Regulating Transformers[J]. IEEE Transactions on Power Delivery, 2014, 29(5):2146-2153. (SCI收录)
[8] Zheng T, Zhao Y J, Jin Y, et al. Design and Analysis on the Turn-to-Turn Fault Protection Scheme for the Control Winding of a Magnetically Controlled Shunt Reactor[J]. IEEE Transactions on Power Delivery, 2015, 30(2):967-975. (SCI收录)
[9] Zheng T, Huang T, Ma Y, et al. Histogram-Based Method to Avoid Maloperation of Transformer Differential Protection Due to Current Transformer Saturation under External Faults[J]. IEEE Transactions on Power Delivery, 2018, 33(2):610-619. (SCI收录)
[10] Zheng T, Zhang J, Wu D, et al. Cross-voltage short-circuit calculation for mixed-voltage quadruple-circuit lines on the same tower[J]. Iet Generation Transmission & Distribution, 2017, 11(9):2342-2350. (SCI收录)
[11] Zheng T, Shen H, Huang S, et al. The effect of transformer non‐synchronous energization on differential protection and its countermeasure[J]. International Transactions on Electrical Energy Systems, 2016, 26(2):309-322. (SCI收录)
[12] Zheng T, Lu G, Chen P, et al. Effects of geomagnetically induced currents on the transfer characteristics of current transformers[J]. International Transactions on Electrical Energy Systems, 2016, 27(2). (SCI收录)
[13] Zheng T, Huang T, Zhang F, et al. Modeling and impacts analysis of energization transient of EHV/UHV magnetically controlled shunt reactor[J]. International Transactions on Electrical Energy Systems, 2017, 27(7):e2330. (SCI收录)
[14] 刘校销, 郑涛, 黄婷. 基于等效漏电感参数辨识的磁控式并联电抗器匝间故障保护方案[J]. 电工技术学报. (EI收录)
[15] 郑涛,赵彦杰,金颖,张振环,崔大伟,刘洋,杨通,秦川,杨琪. 晶闸管控制变压器式可控高抗本体保护方案[J]. 电网技术,2014,09:2538-2543.(EI收录)
[16] 郑涛,赵彦杰,金颖,张振环,崔大伟,刘洋. 磁控式并联电抗器控制绕组匝间故障分析及保护方案[J]. 电力系统自动化,2014,10:95-99.(EI收录)
[17] 郑涛,赵彦杰,金颖. 特高压磁控式并联电抗器保护配置方案及其性能分析[J]. 电网技术,2014,05:1396-1401. (EI收录)
[18] 郑涛,赵彦杰. 超/特高压可控并联电抗器关键技术综述[J]. 电力系统自动化,2014,07:127-135. (EI收录)
[19] 郑涛,贾仕龙,潘玉美,杨国生. 基于配电网原故障定位方案的分布式电源准入容量研究[J]. 电网技术,2014,08:2257-2262.(EI收录)
[20] 郑涛,魏占朋,迟永宁,刘欣. 考虑撬棒保护动作时间的双馈式风电机组短路电流特性[J]. 电力系统自动化,2014,05:25-30. (EI收录)
[21] 郑涛,陈佩璐,毛安澜,徐振栋,刘连光. 地磁感应电流作用下的CT饱和特性及其引起的变压器差动保护误动[J]. 电网技术,2014,02:520-525. (EI收录)
[22] 郑涛,潘玉美,郭昆亚,王增平,孙洁. 基于节点阻抗矩阵的配电网故障测距算法[J]. 电网技术,2013,11:3233-3240. (EI收录)
[23] 郑涛,陈佩璐,刘连光,毛安澜. 地磁感应电流对电流互感器传变特性及差动保护的影响[J]. 电力系统自动化,2013,22:84-89. (EI收录)
[24] 郑涛,朱先启,徐振栋,刘连光. 适应直流偏磁抑制装置接入的零序电抗继电器动作特性分析[J]. 电网技术,2013,10:2926-2931. (EI收录)
[25] 郑涛,祁欢欢,范莹等,基于阀短路保护的HVDC换流器区内故障定位新方法[J],电力系统自动化,2013,37(5):99-104(EI收录)
[26] 郑涛,朱先启,韩东伟等,直流偏磁抑制装置接入对线路距离保护的影响分析[J].电网技术,2013,37(2):545-550(EI收录)
[27] 郑涛,陈佩璐,刘连光等,计及直流偏磁的电流互感器传变特性对差动保护的影响[J].电力系统自动化,2012,36(20):89-93(EI收录)
[28] 郑涛,刘敏,郭飞,并联电抗器中性点小电抗的选择及其对单相自适应重合闸的影响[J],电力自动化设备,2012,32(5):62-67(EI收录)
[29] 黄少锋,谷君,郑涛,王增平,内桥接线方式下变压器差动保护误动原因及防范措施[J],高电压技术,2011,12(37):3099-3106(EI收录)
[30] 郑涛,刘敏,董淑惠.基于故障相并联补偿电流变化特征的单相自适应重合闸[J].电力系统自动化,2011,35(10):74-78.(EI收录)
[31] 郑涛,王方,金乃正.双重化继电保护系统确定最佳检修周期新方法[J].电力系统自动化,2010,34(10):67-70+75.(EI收录)