Title :
Fast Decoupled Power Flow Solution with Automatic Adjustment of Generator Remote Voltage Control
Author :
Wang, Xuegong ; Louie, Kwok-Wai ; Wilson, Paul ; Liu, WenZhuo
Author_Institution :
Manitoba HVDC Res. Centre
Abstract :
This paper presents a simple method to include the generator remote voltage control in the B" matrix. In this method these generator buses are not treated as PV bus and they will keep the real power P at constant at a specified value. The voltages of these generator buses will be floating as function of its own reactive power. The voltages of the remote buses are controlled to a constant value. Therefore, remote buses are not included in the B" matrix, nor in the iteration process. This is the major enhancement to the original fast decoupled load flow algorithm. The adjustment is performed directly in the solution process and no error-feedback is needed. The new method reduces the number of iterations and makes the convergence faster and also the solution is more stable and has less oscillation in the iteration process. When a remote bus voltage is controlled from a number of remote generator buses, the required reactive power is shared between multiple generators
Keywords :
electric generators; feedback; iterative methods; load flow; machine control; matrix algebra; reactive power; telecontrol; voltage control; B" matrix; convergence; decoupled power flow; error-feedback; iteration process; reactive power; remote generator voltage control; Automatic control; Error correction; Feedback; HVDC transmission; Jacobian matrices; Load flow; Phase transformers; Power generation; Reactive power control; Voltage control; Load flow; adjusted solution; fast decoupled load flow; remote voltage control;
Conference_Titel :
Transmission and Distribution Conference and Exhibition: Asia and Pacific, 2005 IEEE/PES
Conference_Location :
Dalian
Print_ISBN :
0-7803-9114-4
DOI :
10.1109/TDC.2005.1546980