DocumentCode :
17783
Title :
System Frequency Support Through Multi-Terminal DC (MTDC) Grids
Author :
Chaudhuri, N.R. ; Majumder, Ritwik ; Chaudhuri, Balarko
Author_Institution :
Imperial Coll. London, London, UK
Volume :
28
Issue :
1
fYear :
2013
fDate :
Feb. 2013
Firstpage :
347
Lastpage :
356
Abstract :
Control of the converter stations in a multi-terminal DC (MTDC) grid to provide frequency support for the surrounding AC systems is the subject matter of this paper. The standard autonomous power sharing control loop for each converter is modified with a frequency droop control loop. The objective is to minimize the deviation from nominal AC system frequency and share the burden of frequency support among the converter stations of the MTDC grid. The effectiveness of the frequency support is demonstrated through nonlinear simulation of a test system consisting of three isolated AC systems interconnected through an MTDC grid with four converter stations. An averaged model of the MTDC grids is developed to carry out modal analysis of combined multi-machine AC-MTDC systems. Modal analysis is used to characterize and substantiate the time domain behavior in presence of frequency droop control. It is established that appropriate droop control loop for the MTDC grid converters could be effective in reducing the deviation from nominal AC system frequency provided the sensitivity of the system eigen-values to changes in control parameters (e.g., droop coefficients) is accounted for a priori through modal analysis.
Keywords :
frequency control; nonlinear systems; power convertors; power grids; power system control; AC systems; MTDC grid; converter stations; frequency droop control loop; frequency support; modal analysis; multimachine AC-MTDC systems; multiterminal DC grid; nominal AC system frequency; standard autonomous power sharing control loop; system eigenvalues; system frequency support; Frequency control; Frequency conversion; Modal analysis; Power conversion; Voltage control; Autonomous power sharing; droop; frequency support; modal analysis; multi-terminal DC (MTDC); stability; voltage source converter (VSC);
fLanguage :
English
Journal_Title :
Power Systems, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-8950
Type :
jour
DOI :
10.1109/TPWRS.2012.2196805
Filename :
6215004
Link To Document :
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