DocumentCode :
4331
Title :
A New Time Synchronization Method for Reducing Quantization Error Accumulation Over Real-Time Networks: Theory and Experiments
Author :
Xiong Xu ; Zhenhua Xiong ; Xinjun Sheng ; Jianhua Wu ; Xiangyang Zhu
Author_Institution :
State Key Lab. of Mech. Syst. & Vibration, Shanghai Jiao Tong Univ., Shanghai, China
Volume :
9
Issue :
3
fYear :
2013
fDate :
Aug. 2013
Firstpage :
1659
Lastpage :
1669
Abstract :
In real-time network-based systems with long linear paths, the growth rate of time synchronization error is the major barrier to the scalability of systems even if a transparent clock mechanism of IEEE 1588 is used. This paper is devoted to designing a new time synchronization method for such systems. In the proposed algorithm, a proportional-integral (PI) clock servo is used to achieve the frequency compensation. In order to reduce the growth rate of synchronization error due to the quantization error in timestamping, a Kalman filter is designed based on a state-variable model, which is built for the PI controller-tuned slave clock. In addition, the quantization effect is analyzed and the variance of quantization error is quantitatively estimated for each slave node. Experiments are performed to validate its effectiveness and demonstrate that the peak-to-peak jitter is measured to be only 59.37 ns after four hops, and the growth rate of synchronization error can also be significantly reduced by the presented synchronization method. This indicates that the maximum number of networked nodes can be correspondingly increased.
Keywords :
IEEE standards; Kalman filters; PI control; jitter; peer-to-peer computing; real-time systems; synchronisation; Kalman filter; PI clock servo; PI controller-tuned slave clock; cascaded real-time network-based systems; frequency compensation; peak-to-peak jitter; peer-to-peer transparent clock; proportional-integral clock servo; quantization effect analysis; quantization error accumulation reduction; quantization error variance; state-variable model; time 59.37 ns; time synchronization error growth rate; time synchronization method; timestamping; Clocks; Delay; Mathematical model; Peer to peer computing; Real-time systems; Servomotors; Synchronization; Cascaded networks; IEEE 1588; Kalman filter; PI clock servo; distributed systems; synchronization;
fLanguage :
English
Journal_Title :
Industrial Informatics, IEEE Transactions on
Publisher :
ieee
ISSN :
1551-3203
Type :
jour
DOI :
10.1109/TII.2013.2238547
Filename :
6408087
Link To Document :
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