DocumentCode
3339447
Title
Maintaining the power balance in an ´empty network´
Author
Reza, M. ; Dominguez, A.O. ; Schavemaker, P.H. ; Kling, W.L.
Author_Institution
Lab. of Electr. Power Syst., Delft Univ. of Technol.
fYear
2005
fDate
18-18 Nov. 2005
Lastpage
8
Abstract
This paper presents the concept of an "empty network" and shows how the power balance can be maintained in such a system. In this study, an "empty network" is defined as a power system in which no rotating mass is present; all generators are grid-connected via power electronic interfaces, so that the possible inertia of the generators is \´hidden\´ from the network. One generator creates a neat 50 Hz voltage that serves as a frequency reference for the other generators. Conventional power systems are mainly supplied by large centralized synchronous generators. These generators are connected directly to the grid so that there is a coupling between the generator rotor speed, and thus the system frequency, and the power balance in the system. Therefore, an unbalance manifests itself by an altered system frequency. In the empty network, the frequency is fixed, as it is created by a power electronic device, and an unbalance cannot be detected in the classical way. In this paper, an empty network is simulated on an RTDS (real time digital simulator). Voltage deviations are used to detect the power unbalances. Simple test systems that consist of 1,2 and 3 buses are applied, in which all generators are modeled as current sources, except for the frequency reference, which is a voltage source. A load jump is simulated to cause a power unbalance in the system. The study shows that by using voltage deviations as control signals, the power balance can be maintained in an empty network
Keywords
power convertors; power system simulation; rotors; synchronous generators; RTDS; centralized synchronous generators; empty network; frequency reference; grid-connected generators; load jump; power balance maintenance; power electronic device; power electronic interfaces; power unbalances detection; real time digital simulator; Frequency; Mesh generation; Power electronics; Power generation; Power system modeling; Power systems; Rotors; Synchronous generators; System testing; Voltage; RTDS; converter-connected generator; empty network; power balance;
fLanguage
English
Publisher
ieee
Conference_Titel
Future Power Systems, 2005 International Conference on
Conference_Location
Amsterdam
Print_ISBN
90-78205-02-4
Type
conf
DOI
10.1109/FPS.2005.204254
Filename
1600527
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