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Synchrophasor Based Monitoring System for Grid Interactive Energy Storage System Control

Authors

TORKZADEH, ROOZBEH, ELIASSI, MOJTABA, MAZIDI, PEYMAN, RODRÍGUEZ CORTÉS, PEDRO, Brnobic D. , Krommydas K.F. , Stratigakos A.C. , Dikeakos C. , Michael M. , Tapakis R. , Vita V. , Zafiropoulos E. , Pastor R. , Boultadakis G.

External publication

No

Means

Lect. Notes Electr. Eng.

Scope

Conference Paper

Nature

Científica

JCR Quartile

SJR Quartile

SJR Impact

0.134

Publication date

01/01/2020

ISI

000656146800009

Scopus Id

2-s2.0-85079094904

Abstract

Energy Storage Systems installed at primary substations can be used by different participants of the power system for handling the emerging uncertainties caused by supply-side variations, demand-side flexibility and grid topology changes. This work presents a practical design for the monitoring system of the controller of the grid interactive energy storage system. This monitoring scheme takes advantage of synchrophasor measurements gathered by phasor measurement units of wide area measurement systems. The analysis of synchrophasor measurements provides real-time situational awareness over the status of the grid. Therefore, the integration of synchrophasor measurements into the control loop of GI-ESS will enable them to participate in power services of the flexibility market. Furthermore, the implementation of a basic power oscillation damping function as an example of power services using the proposed monitoring system is illustrated in this paper. © 2020, The Author(s).

Keywords

Energy storage; Phase measurement; Phasor measurement units; Battery energy storage systems; Energy storage systems; Interactive energy; Monitoring system; Power oscillation damping; Situational awareness; Synchrophasor measurements; Wide area control; Monitoring

Universidad Loyola members