Accuracy enhancement of the JMarti model by using real poles through vector fitting

被引:0
作者
E. S. Bañuelos-Cabral
J. A. Gutiérrez-Robles
J. L. García-Sánchez
J. Sotelo-Castañón
V. A. Galván-Sánchez
机构
[1] University of Guadalajara,Department of Electrical Mechanical Engineering
[2] University of Guadalajara,Department of Mathematics
来源
Electrical Engineering | 2019年 / 101卷
关键词
ATP-EMTP; JMarti model; Rational approximation; Real poles; Vector fitting;
D O I
暂无
中图分类号
学科分类号
摘要
The JMarti model is used worldwide for electromagnetic transient simulations of transmission lines. This paper proposes increasing the accuracy of the model by using only real poles through vector fitting. The JMarti model uses a rational approximation process that ends in models that include only real poles and zeros. By using vector fitting to synthesize the functions of the JMarti model, one can have complex and real poles. In this work, a process in which complex poles are replaced by real ones, based on the non-dominance of complex poles for smooth functions, is implemented. The improvement in the accuracy is demonstrated through the ATP-EMTP (alternative transient program) program by modeling two cases: a single-phase transmission line configuration and an asymmetrical overhead line configuration. Additionally, the solutions of the test cases with the numerical Laplace transform are taken as references. The results show that, through the proposed methodology, not only an increase in accuracy possible but also the proposed methodology also can be used to improve the computational efficiency of the JMarti model. The presented methodology can easily be applied to any application in which the frequency response data present a smooth behavior. Finally, the presented methodology can be easily applied in an iterative way.
引用
收藏
页码:635 / 646
页数:11
相关论文
共 39 条
  • [1] Marti JR(1982)Accurate modelling of frequency-dependent transmission lines in electromagnetic transient simulations IEEE Trans Power Appar Syst PAS 101 147-157
  • [2] Marti JR(2017)Frequency dependent multiconductor transmission line model with collocated voltage and current propagation IEEE Trans Power Deliv 14 1052-1061
  • [3] Tavighi A(1999)Rational approximation of frequency domain responses by vector fitting IEEE Trans Power Deliv 21 1587-1592
  • [4] Gustavsen B(2006)Improving the pole relocating properties of vector fitting IEEE Trans Power Deliv 56 1661-1667
  • [5] Semlyen A(2008)Robust parametric macromodeling using multivariate orthonormal Vector Fitting IEEE Trans Microw Theory Tech 23 1629-1635
  • [6] Gustavsen B(2008)Weighting method for transient analysis of underground cables IEEE Trans Power Deliv 24 1396-1405
  • [7] Semlyen A(2009)Fast realization of the modal Vector Fitting method for rational modelling with accurate representation of small eigenvalues IEEE Trans Power Deliv 30 2460-2467
  • [8] Deschrijver D(2015)Phase-domain line/cable model through second order blocks IEEE Trans Power Deliv 125 83-90
  • [9] Dhaene T(2015)Enhancing the accuracy of rational function-based models using optimization Electr Power Syst Res 140 424-434
  • [10] Zutter D(2016)Computational efficiency improvement of the universal line model by use of rational approximations with real poles Electr Power Syst Res 11 162-170