Title :
Calculation of Power Transfer Limit Considering Electro-Thermal Coupling of Overhead Transmission Line
Author :
Xiaoming Dong ; Chengfu Wang ; Jun Liang ; Xueshan Han ; Feng Zhang ; Hua Sun ; Mengxia Wang ; Jingguo Ren
Author_Institution :
Dept. of Electr. Eng., Tsinghua Univ., Beijing, China
Abstract :
In this paper, new formulations of the power flow and continuation power flow that allow for electro-thermal coupling in transmission lines have been proposed. The new formulations capture the overhead lines´ electro-thermal coupling effects by treating their series resistances as temperature dependent variables. They generate results that can differ from the results of conventional formulations markedly, particularly for problems centring on line impedances. The paper demonstrates this by applying the new formulations to the power transfer limit calculation. Generally, power transfer limits are defined either by encountering a line´s thermal limit or detecting the onset of voltage collapse in the system. Studies based on 2-bus and 14-bus test systems are used to demonstrate the efficacy of the new formulations for both situations. For these studies, specific point-to-point power transfer limits are calculated with and without the lines´ electro-thermal coupling effects and the results are compared.
Keywords :
load flow; power overhead lines; power system dynamic stability; bus test systems; continuation power flow; electrothermal coupling effect; line impedances; line thermal limit; overhead transmission line; point-to-point power transfer limit calculation; series resistances; temperature dependent variables; voltage collapse onset detection; Couplings; Equations; Jacobian matrices; Mathematical model; Power transmission lines; Reactive power; Resistance; Continuation method; electro-thermal coupling; power flow; saddle-node bifurcation; thermal limit;
Journal_Title :
Power Systems, IEEE Transactions on
DOI :
10.1109/TPWRS.2013.2296553