Title :
Stability Study for a Hybrid AC-DC More-Electric Aircraft Power System
Author :
Areerak, K-N. ; Bozhko, S.V. ; Asher, G.M. ; de Lillo, L. ; Thomas, D.W.P.
Author_Institution :
Suranaree Univ. of Technol., Nakhon Ratchasima, Thailand
Abstract :
The paper deals with the small-signal stability analysis of aircraft ac frequency-wild power systems representing a real ac-dc hybrid distribution architecture with a multiplicity of actuators, aircraft loads, and bus geometries. The dq modelling approach is applied to derive individual power system component models and to constitute the corresponding generalized power system model as a powerful and flexible stability analysis tool. The element models can be interconnected in an algorithmic way according to a variety of the architecture selected. Intensive time-domain simulation and experimental results are used to verify the theoretical results. It is also shown how the proposed approach can be used to predict instability due to possible variations in operating points and system parameters.
Keywords :
actuators; aircraft power systems; power system stability; time-domain analysis; AC-DC hybrid distribution architecture; actuator; aircraft AC frequency-wild power system; aircraft loads; bus geometry; dq modelling approach; hybrid AC-DC more-electric aircraft power system; instability prediction; power system component model; small-signal stability analysis; time-domain simulation; Aircraft; Analytical models; Atmospheric modeling; Load modeling; Power system stability; Rectifiers; Stability analysis;
Journal_Title :
Aerospace and Electronic Systems, IEEE Transactions on
DOI :
10.1109/TAES.2012.6129639