DocumentCode :
1482763
Title :
Time Domain Transformation Method for Accelerating EMTP Simulation of Power System Dynamics
Author :
Fan, Shengtao ; Ding, Hui
Author_Institution :
Power Syst. Dept., CEPRI, Beijing, China
Volume :
27
Issue :
4
fYear :
2012
Firstpage :
1778
Lastpage :
1787
Abstract :
Electromagnetic Transients Program (EMTP) is widely used in power system dynamics studies. However, in most cases EMTP is found inadequate for dealing with the realistic size power systems due to the small time step resulting in relatively slow simulation speeds. To accelerate the EMTP simulations of power system dynamics, a novel frequency-adaptive methodology is proposed. In this method, a new transformation is presented. The properties of the transformation and the numerical solutions based on the transformation are discussed. The component models obtained by discretizing the differential equations at the branch level are also given which are convenient for EMTP implementation. The proposed method allows using large time steps without sacrificing accuracy, which greatly improves the simulation speed. To validate the proposed methodology, a general program has been developed. Furthermore, various case studies substantiate the claims and demonstrate the application of the method.
Keywords :
EMTP; differential equations; power system simulation; time-domain analysis; Electromagnetic Transient Program; accelerating EMTP simulation; differential equation; frequency-adaptive methodology; power system dynamic simulation; time domain transformation method; EMTP; Power system dynamics; Power system simulation; Power system stability; Power system transients; Time domain analysis; Algorithms; Electromagnetic Transients Program (EMTP); companion model; power system dynamic; power system simulation; power system transient stability; shifted frequency analysis (SFA);
fLanguage :
English
Journal_Title :
Power Systems, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-8950
Type :
jour
DOI :
10.1109/TPWRS.2012.2188913
Filename :
6177705
Link To Document :
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