[1]中国城市轨道交通协会.城市轨道交通2021年度统计和分析报告[R].北京:中国城市轨道交通协会,2022:8-11.
[2]李江莉.全自动运行城市轨道交通线路建设管理关键环节的若干思考[J].城市轨道交通研究,2020,23(6):5-9.
Li Jiangli. Research on the Key Links in the Construction and Management of Urban Rail Transit Fully Automatic Operating Lines[J]. Urban Mass Transit, 2020, 23(6): 5-9.
[3]付文佳,韩涛,刘倩,等.基于场景的全自动运行系统安全分析方法[J].铁路通信信号工程技术,2023,20(12):83-87.
Fu Wenjia, Han Tao, Liu Qian, et al. Scenario-Based Safety Analysis Method for Fully Automatic Train Operation Systems[J]. Railway Signalling & Communication Engineering, 2023, 20(12): 83-87.
[4]张艳兵,徐鼎,杜薇.自主化全自动运行系统工程建设实践[J].都市快轨交通,2020,33(1):9-14.
Zhang Yanbing, Xu Ding, Du Wei. Engineering Application of Proprietary Fully Automatic Operation System[J]. Urban Rapid Rail Transit, 2020, 33(1): 9-14.
[5]任宁宁,杜江红.面向互联互通的全自动运行系统测试方案[J].铁路通信信号工程技术,2020,17(2):103-106,111.
Ren Ningning, Du Jianghong. Test Scheme of Fully Automatic Operation(FAO) System for Interoperability[J]. Railway Signalling & Communication Engineering, 2020, 17(2): 103-106, 111.
[6]袁重阳.基于FAO仿真测试系统应用的底层框架设计[J].铁路通信信号工程技术,2022,19(6):81-86,95.
Yuan Chongyang. Design of Underlying Frame Based on FAO Simulation Test System[J]. Railway Signalling & Communication Engineering, 2022, 19(6): 81-86, 95.
[7]魏明瑞.FAO信号系统与外部接口测试方案[J].铁路通信信号工程技术,2022,19(8):97-100.
Wei Mingrui. Test Scheme of Interfaces between FAO Signaling System and External Systems[J]. Railway Signalling & Communication Engineering, 2022, 19(8): 97-100.
[8]董洪卫,赵博伦.全自动运行系统站台门间隙探测与信号系统接口探究[J].铁路通信信号工程技术,2021,18(9):69-72.
Dong Hongwei, Zhao Bolun. Interface between Platform Door Gap Detection and Signal System in Full-Automatic Operation System[J]. Railway Signalling & Communication Engineering, 2021, 18(9): 69-72.
[9]王永清.车载ATC仿真模拟器设计与应用[J].铁路通信信号工程技术,2022,19(4):67-71,84.
Wang Yongqing. Design and Application of On-Board ATC Simulator[J]. Railway Signalling & Communication Engineering, 2022, 19(4): 67-71, 84.
[10]王军贤.城轨云在全自动运行系统中的应用研究[J].铁路通信信号工程技术,2020,17(9):73-77.
Wang Junxian. Application of Urban Rail Cloud in Fully Automatic Operation Systems[J]. Railway Signalling & Communication Engineering, 2020, 17(9): 73-77.
[11]郭弘倩,南迪.基于云架构的城市轨道交通信号系统方案研究[J].铁路通信信号工程技术,2024,21(2):72-77,102.
Guo Hongqian, Nan Di. Research on Urban Rail Transit Signal System Scheme Based on Cloud Architecture[J]. Railway Signalling & Communication Engineering, 2024, 21(2): 72-77, 102.
[12]付立民.轨道交通信号测试技术发展研究[J].铁路通信信号工程技术,2021,18(8):111-116.
Fu Limin. Research on Development of Rail Transit Signaling Test Technology[J]. Railway Signalling & Communication Engineering, 2021, 18(8): 111-116.
[13]钟章队,黄靖茹,李斌,等.智能通号技术在城市轨道交通中的应用[J].都市快轨交通,2019,32(3):5-12.
Zhong Zhangdui, Huang Jingru, Li Bin, et al. Application of Intelligent Signal and Communications Technology in Urban Rail Transit System[J]. Urban Rapid Rail Transit, 2019, 32(3): 5-12.
[14]郑辉.城市轨道交通全自动运行系统外场测试方案研究[J].铁道标准设计,2019,63(5):168-173.
Zheng Hui. Research on Field Test Scheme for Fully Automatic Operation System of Urban Rail Transit[J]. Railway Standard Design, 2019, 63(5): 168-173.
[15]中国城市轨道交通协会.城市轨道交通全自动运行系统规范第4部分:测试及验证:T/CAMET 04017.4-2019[S].北京:中国铁道出版社,2019.
[16]洪海珠.基于关键运营场景的城市轨道交通全自动运行系统全生命周期闭环管理[J].城市轨道交通研究,2020,23(Z2):4-6.
Hong Haizhu.Closed-loop Management Method of FAO System Full Life Cycle Based on Key Operation Scenarios[J].Urban Mass Transit,2020, 23(Z2):4-6.
[17]李迎春,李叶,刘锦峰.地铁FAO信号系统关键场景分析与测试设计[J].铁道通信信号,2021,57(12):76-81.
Li Yingchun, Li Ye, Liu Jinfeng.Key Scenario Analysis and Test Design of Metro FAO Signal System[J].Railway Signalling & Communication, 2021, 57(12):76-81.
|