Andrich C, Bauer J, Ihlow A, Beuster N, Galdo GD (2018)
Publication Type: Conference contribution
Publication year: 2018
Publisher: IEEE Computer Society
Book Volume: 2018-September
Conference Proceedings Title: IEEE International Symposium on Precision Clock Synchronization for Measurement, Control, and Communication, ISPCS
Event location: Geneva, CHE
ISBN: 9781538642627
DOI: 10.1109/ISPCS.2018.8543073
For precision clock analysis in terms of sine (10 MHz) and pulse per second (1 PPS) reference signals, usually the dual-mixer time difference (DMTD) method and the time interval counter (TIC) were used. This paper addresses the application of adequate software-defined radio (SDR) platforms, instead. As hardware, the Universal Software Radio Peripheral (USRP) N210 and X310 by Ettus Research LLC are compared with respect to the attainable measurement precision. Implementing a digital down-conversion (DDC) with subsequent phase comparison for the 10 MHz signals and a Schmitt-trigger with subsequent two-stage interpolation for detecting the edges of the 1 PPS signals, we pay special attention to the specifics of the two platforms and demonstrate how to exploit modern x86 processor architectures. As results, we evaluate the remaining measurement uncertainty in terms of the the Allan deviation and the time interval error, which stems inherently from the investigated SDR platforms in connection with the proposed DSP algorithms.
APA:
Andrich, C., Bauer, J., Ihlow, A., Beuster, N., & Galdo, G.D. (2018). Comparison of Software-Defined Radios for Performance Evaluation of High Precision Clocks. In IEEE International Symposium on Precision Clock Synchronization for Measurement, Control, and Communication, ISPCS. Geneva, CHE: IEEE Computer Society.
MLA:
Andrich, Carsten, et al. "Comparison of Software-Defined Radios for Performance Evaluation of High Precision Clocks." Proceedings of the 12th International IEEE Symposium on Precision Clock Synchronization for Measurement, Control, and Communication, ISPCS 2018, Geneva, CHE IEEE Computer Society, 2018.
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