[1] |
IEEE. IEEE Std 1588-2002,IEEE standard for a precision clock synchronization protocol for networked measurement and control system[S]. New York:IEEE, 2002.
|
[2] |
IEEE. IEEE Std 1588-2008,IEEE standard for a precision clock synchronization protocol for networked measurement and control system[S]. New York:IEEE, 2008.
|
[3] |
Crossley P A, Guo H, Ma Z . Time synchronization for transmission substations using GPS and IEEE 1588[J]. CSEE Journal of Power and Energy Systems, 2016,2(3):91-99.
|
[4] |
Astarloa A, Moreira N, Bidarte U , et al. FPGA based nodes for sub-microsecond synchronization of cyber-physical production systems on high availability ring networks[C].Mexico City:International Conference on ReConFigurable Computing and FPGAs( ReConFig), 2015.
|
[5] |
Oliver D, Otto A J, Neufeld N . A study of the merits of precision time protocol (IEEE-1588) across high-speed data networks[M]. Meyrin:CERN, 2015.
|
[6] |
Le Pallec M, Bui D T. Automatic capture of the network delay components:U.S.,patent application,9413625[P]. 2016-08-09.
|
[7] |
Ruffini S, Gray E W, Kini S, et al.Transmitting residence time information in a network:U.S.,Patent Application,15/524540[P]. 2017 -11-09.
|
[8] |
Dong M, Qiu Z, Pan W , et al. The design and implementation of IEEE 1588v2 clock synchronization system by generating hardware timestamps in MAC layer[C].Colmar:International Conference on Computer, Information and Telecommunication Systems(CITS) , 2018.
|
[9] |
Fubin P, Yubo Y, Lei G, et al.The accuracy of IEEE 1588 time synchronization protocol and its improvement [C]. Qingdao:12th IEEE International Conference on Electronic Measurement & Instruments (ICEMI) , 2015.
|
[10] |
郑恭明, 沈媛媛 . 基于FPGA的GPS同步时钟系统设计[J]. 桂林理工大学学报, 2015,35(1):198-201.
|
|
Zheng Gongming, Shen Yuanyuan . Design of GPS synchronous clock system based on FPGA[J]. Journal of Guilin University of Technology, 2015,35(1):198-201.
|
[11] |
魏建新 . IEEE1588时钟同步技术在飞行试验遥测网络系统中的应用[J]. 计算机测量与控制, 2015,23(4):1115-1117.
|
|
Wei Jianxin . Application of IEEE1588 clock synchronization technology in network system of flight test telemetry[J]. Computer Measurement and Control, 2015,23(4):1115-1117.
|
[12] |
Kero N, Kernen T, Muller T , et al. Optimizing large media networks for highly accurate time transfer via PTP[J]. SMPTE Motion Imaging Journal, 2016,125(2):30-44.
|
[13] |
杜慧琦, 刘玥, 刘博 , 等. IEEE1588v2时钟同步技术在战术信息系统中的应用[J]. 计算机应用与软件, 2017,34(11):125-129.
|
|
Du Huiqi, Liu Yue, Liu Bo , et al. Application of IEEE1588v2 clock synchronization technology in tactical information system[J]. Computer Applications and Software, 2017,34(11):125-129.
|
[14] |
Yin H, Fu P, Qiao J, et al.The implementation of IEEE 1588 clock synchronization protocol based on FPGA [C].Houston:IEEE International Instrumentation and Measurement Technology Conference ( I 2MTC ), 2018.
|
[15] |
Esquembri S, Sanz D, Barrera E , et al. Hardware timestamping for an image acquisition system based on FlexRIO and IEEE 1588 v2 standard[J]. IEEE Transactions on Nuclear Science, 2016,63(1):228-235.
|
[16] |
李文辉, 简献忠, 肖儿良 . 变电站实时监控系统中的千兆以太网传输设计[J]. 电子科技, 2018,31(1):16-19,33.
|
|
Li Wenhui, Jian Xianzhong, Xiao Erliang . Design of gigabit Ethernet transmission in real-time monitoring system of substation[J]. Electronic Science and Technology, 2018,31(1):16-19,33.
|
[17] |
陈凯, 唐清善, 李亚捷 , 等. 基于FPGA的千兆以太网传输实现方案[J]. 电子科技, 2017,30(6):102-104,108.
|
|
Chen Kai, Tang Qingshan, Li Yajie , et al. Implementation scheme of gigabit Ethernet transmission based on FPGA[J]. Electronic Science and Technology, 2017,30(6):102-104,108.
|