Title of article :
Fractal boundaries of basin of attraction of Newton–Raphson method in
helicopter trim
Author/Authors :
D. Chandra Sekhar، نويسنده , , R. Ganguli، نويسنده ,
Issue Information :
دوهفته نامه با شماره پیاپی سال 2010
Abstract :
A key problem in helicopter aeroelastic analysis is the enormous computational time
required for a numerical solution of the nonlinear system of algebraic equations required
for trim, particularly when free wake models are used. Trim requires calculation of the
main rotor and tail rotor controls and the vehicle attitude which leads to the six steady
forces and moments about the helicopter center of gravity to be zero. An appropriate
initial estimate of the trim state is needed for successful helicopter trim. This study aims
to determine the control inputs that can have considerable effect on the convergence of
trim solution in the aeroelastic analysis of helicopter rotors by investigating the basin of
attraction of the nonlinear equations (set of initial guess points from which the nonlinear
equations converge). It is illustrated that the three main rotor pitch controls of collective
pitch, longitudinal cyclic pitch and lateral cyclic pitch have a significant contribution to
the convergence of the trim solution. Trajectories of the Newton iterates are shown and
some ideas for accelerating the convergence of a trim solution in the aeroelastic analysis
of helicopters are proposed. It is found that the basins of attraction can have fractal
boundaries.
Keywords :
Fractals , Newton–Raphson method , System of nonlinear algebraic equations , Helicopter , Aeroelastic analysis
Journal title :
Computers and Mathematics with Applications
Journal title :
Computers and Mathematics with Applications