Title :
Synchrophasor Broadcast Over Internet Protocol for Distributed Generator Synchronization
Author :
Best, Robert J. ; Morrow, D.John ; Laverty, David M. ; Crossley, Peter A.
Author_Institution :
Electr. Power & Energy Res. Cluster, Queen´´s Univ. Belfast, Belfast, UK
Abstract :
Synchronous islanded operation involves continuously holding an islanded power network in virtual synchronism with the main power system to aid paralleling and avoid potentially damaging out-of-synchronism reclosure. This requires phase control of the generators in the island and the transmission of a reference signal from a secure location on the main power system. Global positioning system (GPS) time-synchronized phasor measurements transmitted via an Internet protocol (IP) are used for the reference signal. However, while offering low cost and a readily available solution for distribution networks, IP communications have variable latency and are susceptible to packet loss, which can make time-critical control applications difficult. This paper investigates the ability of the phase-control system to tolerate communications latency. Phasor measurement conditioning algorithms that can tolerate latency are used in the phase-control loop of a 50-kVA diesel generator.
Keywords :
Global Positioning System; Internet; distribution networks; phase control; protocols; synchronisation; synchronous generators; GPS; IP communications; Internet protocol; diesel generator; distributed generator synchronization; distribution networks; generator phase control; global positioning system; islanded power network; main power system; phase-control system; phasor measurement conditioning algorithms; synchronous islanded operation; synchrophasor broadcast; time-synchronized phasor measurements; virtual synchronism; Broadcasting; Delay; Distributed power generation; IP networks; Internet; Phase control; Power generation; Power system measurements; Protocols; Synchronous generators; Broadband communication; diesel-driven generators; distributed generation; latency; phasor measurement unit (PMU); power system islanding; real-time control; synchronization control; synchrophasors;
Journal_Title :
Power Delivery, IEEE Transactions on
DOI :
10.1109/TPWRD.2010.2044666