A robust aeroelastic optimization is performed to minimize helicopter vibration with uncertainties in the design variables. Polynomial response surfaces and space-¯lling experimental designs are used to generate the surrogate model of aeroelastic analysis code. Aeroelastic simulations are performed at the sample inputs generated by Latin hypercube sampling. The response values which does not satisfy the frequency constraints are eliminated from the data for model ¯tting. This step increased the accuracy of response surface models in the feasible design space. It is found that the response surface models are able to capture the robust optimal regions of design space. The optimal designs show a reduction of 10 percent in the objective functi...
This paper presents a survey of applications of design optimization to helicopter problems carried o...
The design of helicopter rotor blades is a challenging task. On the one hand, there are the demandin...
The effectiveness of surrogate based optimization of helicopter rotor blades for vibration reduction...
An aeroelastic analysis based on finite elements in space and time is used to model the helicopter r...
Aeroelastic optimization of a four-bladed, soft-inplane hingeless rotor is performed to reduce hub l...
An optimization procedure to 1) reduce the 4/revolution oscillatory hub loads and 2) increase the la...
Design optimisation of a helicopter rotor blade is performed. The objective is to reduce helicopter ...
AbstractThe paper presents an analytical study of the helicopter rotor vibratory load reduction desi...
Incorporating uncertainties in the aeroelastic analysis increases the confidence levels of computati...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/76484/1/AIAA-2009-2601-797.pd
AbstractThe paper addresses the integration of blade dynamics, aerodynamics, structures and aeroelas...
This study aims to determine optimal locations of dual trailing-edge flaps and blade stiffness to ac...
A robust optimization technique is developed for the aerodynamic shape optimization of a helicopter ...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/76201/1/AIAA-2006-1821-974.pd
The motivation of this work is to reduce the overall required computational resources of the aerodyn...
This paper presents a survey of applications of design optimization to helicopter problems carried o...
The design of helicopter rotor blades is a challenging task. On the one hand, there are the demandin...
The effectiveness of surrogate based optimization of helicopter rotor blades for vibration reduction...
An aeroelastic analysis based on finite elements in space and time is used to model the helicopter r...
Aeroelastic optimization of a four-bladed, soft-inplane hingeless rotor is performed to reduce hub l...
An optimization procedure to 1) reduce the 4/revolution oscillatory hub loads and 2) increase the la...
Design optimisation of a helicopter rotor blade is performed. The objective is to reduce helicopter ...
AbstractThe paper presents an analytical study of the helicopter rotor vibratory load reduction desi...
Incorporating uncertainties in the aeroelastic analysis increases the confidence levels of computati...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/76484/1/AIAA-2009-2601-797.pd
AbstractThe paper addresses the integration of blade dynamics, aerodynamics, structures and aeroelas...
This study aims to determine optimal locations of dual trailing-edge flaps and blade stiffness to ac...
A robust optimization technique is developed for the aerodynamic shape optimization of a helicopter ...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/76201/1/AIAA-2006-1821-974.pd
The motivation of this work is to reduce the overall required computational resources of the aerodyn...
This paper presents a survey of applications of design optimization to helicopter problems carried o...
The design of helicopter rotor blades is a challenging task. On the one hand, there are the demandin...
The effectiveness of surrogate based optimization of helicopter rotor blades for vibration reduction...