Title :
Line constants and transient simulation of wiring on L-type duct
Author :
Higo, Tatsuya ; Baba, Yoshihiro ; Nagaoka, Naoto ; Ametani, Akihiro
Abstract :
Line constants calculation and simulation methods of wirings on an L-type duct are proposed in this paper. The single-phase wire is modeled by a distributed parameter line model with a characteristic impedance obtained by the proposed equation. The characteristic impedance of the line on an L-type duct is unaffected by the distance between the wire and the wall of the duct if the wire is installed at a distance of more than twice its height from the wall. Simulated result obtained by the proposed model agrees with a measured result and a calculated result by Finite Difference Time Domain (FDTD) method, which gives theoretically accurate result. The calculation time of the proposed method is far smaller than that of the other methods. A proposed multi phase simulation model of a wiring on an L-type duct enables a practical estimation of its transient characteristic.
Keywords :
EMTP; finite difference time-domain analysis; photovoltaic power systems; power system simulation; power system transients; wiring; L-type duct; characteristic impedance; finite difference time domain; line constants calculation; single-phase wire; transient simulation; wiring; Conductors; Ducts; Finite difference methods; Impedance; Integrated circuit modeling; Wires; Wiring; EMTP; FDTD method; High frequency surge; Image method; Line constants; Photovoltaic generation system; Two-phase line;
Conference_Titel :
Power Engineering Conference (UPEC), 2013 48th International Universities'
Conference_Location :
Dublin
DOI :
10.1109/UPEC.2013.6714914