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Title: DYNAMIC ASSESSMENT FOR ISLANDING DETECTION AND SITUATIONAL AWARENESS WITH DISTRIBUTED GENERATION
Author(s): DELBERIS ARAUJO LIMA
JAYME EVARISTO DA SILVA FILHO
Contributor(s): ---
Launched: 02/FEV/2017
Type: SPREAD SHEET Language(s): ENGLISH - UNITED STATES
Note:
These data are based on the IEEE 24 bus system, available online at at https://www2.ee.washington.edu/research/pstca/, as public domain and unrestricted distribution, as of authorized by Prof. Rich Christie, with the addition of maximum and minimum generation information, transmission line capacity and dynamic data. The original system consists of 32 synchronous generators (3405 MW total) with 38 branches and 17 load points. The total system real and reactive power maximum demand is 2850 MW, 665 Mvar, respectively. Detailed static data of the system can be found in: [INSTITUTE OF ELECTRICAL AND ELECTRONIC ENGINEERS; The IEEE reliability test system – 1996, a report prepared by the reliability test system task force of the application of probability methods subcommittee. IEEE Transactions on Power Systems, vol. 14, no. 3, pp. 1010–1020, 1999]. The modified system was used to assess dynamic responses for different load and generation scenarios, replacing the synchronous generators at busses #15 and #16 by the equivalent real power amount of DFIG-type Wind turbines.
Reference: https://www.maxwell.vrac.puc-rio.br/ResearchData/Consulta.php?strSecao=resultado&nrSeq=28966@2
DOI:
https://doi.org/10.17771/PUCRio.ResearchData.28966
Abstract:
This file refers to a 24-bus-based system that was used for the Load Flow studies and dynamic simulations regarding in the IEEE Powertech paper Dynamic Assessment for Islanding Detection and Situational Awareness with Distributed Generation and MSc. degree dissertation Dynamic assessment of power subsystems islanding with dispersed generation interconnected to the transmission network.
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