DocumentCode :
19699
Title :
Self-Tuning Virtual Synchronous Machine: A Control Strategy for Energy Storage Systems to Support Dynamic Frequency Control
Author :
Torres L, Miguel A. ; Lopes, Luiz A. C. ; Moran T, Luis A. ; Espinoza C, Jose R.
Author_Institution :
Dept. of Electr. Eng., Univ. de Concepcion, Concepcion, Chile
Volume :
29
Issue :
4
fYear :
2014
fDate :
Dec. 2014
Firstpage :
833
Lastpage :
840
Abstract :
This paper investigates the use of a virtual synchronous machine (VSM) to support dynamic frequency control in a diesel-hybrid autonomous power system. The proposed VSM entails controlling the grid-interface converter of an energy storage system (ESS) to emulate the inertial response and the damping power of a synchronous generator. In addition, self-tuning algorithms are used to continuously search for optimal parameters during the operation of the VSM in order to minimize the amplitude and rate of change of the frequency variations and the power flow through the ESS. The performances of the proposed self-tuning (ST)-VSM and the constant parameters (CP)-VSM were evaluated by comparing their inertial responses and their damping powers for different scenarios of load variations. For the simulated cases, the ST-VSM achieved a similar performance to that of the CP-VSM, while reducing the power flow through the ESS in up to 58%. Moreover, in all the simulated scenarios, the ST-VSM was found to be more efficient than the CP-VSM in attenuating frequency variations, i.e., it used less energy per Hertz reduced.
Keywords :
adaptive control; automatic frequency control; diesel-electric generators; hybrid power systems; load flow control; minimisation; power system control; self-adjusting systems; synchronous generators; virtual machines; CP-VSM; ESS grid-interface converter; ST-VSM; amplitude minimization; constant parameter VSM load variation; diesel-hybrid autonomous power system; dynamic frequency control; energy storage system; inertial response; power flow; self-tuning virtual synchronous machine; synchronous generator damping power; Damping; Frequency control; Generators; Optimization; Power system dynamics; Power system stability; Time-frequency analysis; Autonomous power system; energy storage; frequency control; optimal control;
fLanguage :
English
Journal_Title :
Energy Conversion, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-8969
Type :
jour
DOI :
10.1109/TEC.2014.2362577
Filename :
6940306
Link To Document :
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