[1]闻崇义.浅谈计轴技术的发展和运用[J].铁路通信信号工程技术,2007,4(2):21-23.
Wen Chongyi. Development and Application of Axle-Counting Technology[J]. Railway Signalling & Communication Engineering, 2007, 4(2): 21-23.
[2]王梓丞,张亚东,郭进,等.牵引回流对计轴设备的影响分析[J].铁道标准设计,2018,62(2):166-172.
Wang Zicheng, Zhang Yadong, Guo Jin, et al. Impact Analysis of Traction Return Current on Axle Counter[J]. Railway Standard Design, 2018, 62(2): 166-172.
[3]付丽,丛培城,马兰.地铁车辆牵引系统干扰计轴器问题的故障分析和解决方案[J].铁道车辆,2020,58(8):26-28,31,6.
Fu Li, Cong Peicheng, Ma Lan. Analysis of the Trouble of Traction System Interfering the Axle Counter on Metro Vehicles and Scheme of Solution[J]. Rolling Stock, 2020, 58(8): 26-28, 31, 6.
[4]王一博.交流25 kV牵引制式下城市铁路信号系统的电磁兼容性研究[D].北京:北京交通大学,2021.
[5]周天一.城际列车车辆对计轴器的电磁干扰研究[D].成都:西南交通大学,2022.
[6]黄江伟,李守杰,王龙.城市轨道交通专用轨回流供电系统设计及应用[J].城市轨道交通研究,2022,25(1):193-196.
Huang Jiangwei, Li Shoujie, Wang Long. Design and Application of Special Rail Return Current Power Supply System in Urban Rail Transit[J]. Urban Mass Transit, 2022, 25(1): 193-196.
[7]王鹏,黄健,袁大鹏,等.城市轨道交通计轴受扰研究与分析[J].自动化与仪表,2022,37(1):6-9,29.
Wang Peng, Huang Jian, Yuan Dapeng, et al. Research and Analysis of Axle Counter Disturbance in Urban Rail Transit[J]. Automation & Instrumentation, 2022, 37(1): 6-9, 29.
[8]谢处方,饶克谨.电磁场与电磁波[M].4版.北京:高等教育出版社,2006.
[9]蒋晶,龙讯,钟志辉.浅谈如何降低牵引电流感应对计轴设备的影响[J].信息通信,2015,28(1):278.
[10]谢兰英,许海祥.铁路线路属性对信号系统的影响及解决方案[J].铁路通信信号工程技术,2023,20(9):19-22.
Xie Lanying, Xu Haixiang. Influence of Railway Line Attributes on Signaling System and Solutions[J]. Railway Signalling & Communication Engineering, 2023, 20(9): 19-22.
[11]徐剑,刘孟恺.交流25 kV供电制式在城市轨道交通中的应用探讨[J].电气化铁道,2019,30(1):79-81.
Xu Jian, Liu Mengkai. Study on Application of AC 25 kV Power Supply Mode Adopted in Urban Mass Transit[J]. Electric Railway, 2019, 30(1): 79-81.
[12]王蛟,李小明.市域轨道交通供电制式研究[J].电气化铁道,2017,28(6):59-61,67.
Wang Jiao, Li Xiaoming. Researches on Power Supply Mode of Commuter Rail Transit[J].Electric Railway, 2017, 28(6): 59-61, 67.
[13]喻文球.温州市域铁路网系统制式研究[J].铁道工程学报,2014,31(3):14-18.
Yu Wenqiu. Research on Format of Urban Rail Transit Network System in Wenzhou[J]. Journal of Railway Engineering Society, 2014, 31(3): 14-18.
[14]黄足平.轨道交通采用25 kV交流制的电分相影响分析及处理对策[J].铁道标准设计,2016,60(11):119-121.
Huang Zuping. The Influence of 25 kV AC Neutral Section of Urban Rail Transit and Treatment Measures[J]. Railway Standard Design, 2016, 60(11): 119-121.
[15]周求定.城市轨道交通线网规划与牵引供电制式的选择[J].都市快轨交通,2004,17(2):42-45,48.
Zhou Qiuding. Network Planning and Mode Selection of Power Supply for Traction of Urban Rail Transit System[J]. Urban Rapin Rail Transit, 2004, 17(2): 42-45, 48.
[16]文仁广.成都18号线25 kV交流牵引电磁环境测试研究[J].现代城市轨道交通,2017(5):37-43.
Wen Renguang. Study on Electromagnetic Environment Test of 25 kV AC Traction on Chengdu Line 18[J]. Modern Urban Transit, 2017(5): 37-43.
[17]王梓丞,张亚东,郭进,等.牵引回流对计轴设备的影响分析[J].铁道标准设计,2018,62(2):166-172.
Wang Zicheng, Zhang Yadong, Guo Jin, et al. Impact Analysis of Traction Return Current on Axle Counter[J]. Railway Standard Design, 2018, 62(2): 166-172.
[18]方明亮,卫旭初,严之伟.采用车地融合方式开展列控过分相计算研究[J].铁路通信信号工程技术,2023,20(1):1-6.
Fang Mingliang, Wei Xuchu, Yan Zhiwei. Research on Calculation for Passing through Neutral Sections in Trian Control by Applying Vehicle-Ground Integration Approach[J]. Railway Signalling & Communication Engineering, 2023, 20(1): 1-6.
[19]何涛,李培强,王璜,等.地铁牵引回流系统的钢轨电位和杂散电流仿真[J].福建工程学院学报,2017,15(4):386-392.
He Tao, Li Peiqiang, Wang Huang, et al. Simulation of Rail Potential and Stray Current in Metro Traction Return System[J]. Journal of Fujian University of Technology, 2017, 15(4): 386-392.
[20]田文礼,马学霞,谢志明.计轴室外干扰故障的分析与解决方案[J].铁路通信信号工程技术,2023,20(3):72-76.
Tian Wenli, Ma Xuexia, Xie Zhiming. Analysis and Solution of Outdoor Interference Fault of Axle Counter[J]. Railway Signalling & Communication Engineering, 2023, 20(3): 72-76.
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