This paper presents the design and the implementation of a servo-clock (SC) for low-cost Phasor Measurement Units (PMUs). The SC relies on a classic Proportional Integral (PI) controller, which has been properly tuned to minimize the synchronization error due to the local oscillator triggering the on-board timer. The SC has been implemented into a PMU prototype developed within the OpenPMU project using a BeagleBone Black (BBB) board. The distinctive feature of the proposed solution is its ability to track an input Pulse-Per-Second (PPS) reference with good long-term stability and with no need for specific on-board synchronization circuitry. Indeed, the SC implementation relies only on one co-processor for real-time application and requires just an input PPS signal that could be distributed from a single substation clock.

Tosato, P., Macii, D., Fontanelli, D., Brunelli, D., Laverty, D. (2018). A Software-based Low-Jitter Servo Clock for Inexpensive Phasor Measurement Units. Piscataway, NJ, USA : IEEE [10.1109/ISPCS.2018.8543082].

A Software-based Low-Jitter Servo Clock for Inexpensive Phasor Measurement Units

Brunelli, Davide;
2018

Abstract

This paper presents the design and the implementation of a servo-clock (SC) for low-cost Phasor Measurement Units (PMUs). The SC relies on a classic Proportional Integral (PI) controller, which has been properly tuned to minimize the synchronization error due to the local oscillator triggering the on-board timer. The SC has been implemented into a PMU prototype developed within the OpenPMU project using a BeagleBone Black (BBB) board. The distinctive feature of the proposed solution is its ability to track an input Pulse-Per-Second (PPS) reference with good long-term stability and with no need for specific on-board synchronization circuitry. Indeed, the SC implementation relies only on one co-processor for real-time application and requires just an input PPS signal that could be distributed from a single substation clock.
2018
IEEE International Symposium on Precision Clock Synchronization for Measurement, Control, and Communication
1
6
Tosato, P., Macii, D., Fontanelli, D., Brunelli, D., Laverty, D. (2018). A Software-based Low-Jitter Servo Clock for Inexpensive Phasor Measurement Units. Piscataway, NJ, USA : IEEE [10.1109/ISPCS.2018.8543082].
Tosato, Pietro; Macii, David; Fontanelli, Daniele; Brunelli, Davide; Laverty, David
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/1043472
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