Title of article :
Theoretical foundation of the controlling UEP method for direct transient-stability analysis of networkpreserving power system models
Author/Authors :
Chiang، Hsiao-Dong نويسنده , , Zou، Yun نويسنده , , Yin، Ming-Hui نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2003
Abstract :
The controlling unstable equilibrium point (CUEP) method developed for the traditional network-reduction power-system (transient-stability) model requires some modification for direct stability analysis of the network-preserving power system model. This is mainly due to the peculiar nonlinear jump behaviors occurring in network-preserving power system model. An extended CUEP method suitable for direct stability analysis of network-preserving models is developed. The extended CUEP method examines both external jump behaviors and stability regions of network-preserving models. It is shown that the target point of the fault-clearing point (i.e., the initial point of the post-fault system), instead of the fault-clearing point as in classical case, plays a crucial role in direct stability analysis of network-preserving power systems models. A theoretical foundation for the extended CUEP method is developed. A variation of the extended CUEP method is presented.
Keywords :
atmospheric change , pheromone , predator-prey , Top-down , Carbon dioxide , Bottom-up , ozone , air pollution , Greenhouse gas
Journal title :
IEEE TRANSACTIONS ON CIRCUITS AND SYSTEMS
Journal title :
IEEE TRANSACTIONS ON CIRCUITS AND SYSTEMS