This paper presents the nonlinear six degrees of freedom dynamic modeling of a fixed wing micro air vehicle. The static derivatives of the micro air vehicle are obtained through the wind tunnel testing. The propeller effects on the lift, drag, pitching moment and side force are quantified through wind tunnel testing. The dynamic derivatives are obtained through empirical relations available in the literature. The trim conditions are computed for a straight and constant altitude flight condition. The linearized longitudinal and lateral state space models are obtained about trim conditions. The variations in short period mode, phugoid mode, Dutch roll mode, roll subsidence mode and spiral mode with respect to different trim operating conditio...
This paper presents results from a wind tunnel investigation that sought to quantify stability and...
Thesis (M.A.)--Wichita State University, College of Engineering, Dept. of Aerospace EngineeringIn th...
This paper is focused on the model identification of a Micro Air Vehicle (MAV) in straight steady fl...
This paper presents the nonlinear six degrees of freedom dynamic modeling of a fixed wing micro air ...
Micro aerial vehicles have been the subject of continued interest and development over the last seve...
In this paper, we consider the nonlinear modeling and control design for coupled longitudinal and la...
The paper presents two open loop methods to control the unstable, longitudinal oscillation of a flap...
This paper presents the results of a series of flight tests conducted in order to assess the steady-...
Compared with the tailless flapping wing micro air vehicle (FMAV), the tailed FMAV has a simpler str...
Performing highly aggressive maneuvers that push the capabilities of an aircraft typically requires ...
This paper discusses a methodology of analyzing the flight dynamic stability of a flapping wing Micr...
The analysis of the passive rotation feature of a micro Flapping Rotary Wing (FRW) applicable for Mi...
Despite widespread research into the possibilities of improving aerodynamic efficiency, a plateau se...
Micro aerial vehicles design represents a challenge that lasted for years and the fact that they ope...
This paper addresses the modeling of transient aerodynamic behavior at angles of attack near and wel...
This paper presents results from a wind tunnel investigation that sought to quantify stability and...
Thesis (M.A.)--Wichita State University, College of Engineering, Dept. of Aerospace EngineeringIn th...
This paper is focused on the model identification of a Micro Air Vehicle (MAV) in straight steady fl...
This paper presents the nonlinear six degrees of freedom dynamic modeling of a fixed wing micro air ...
Micro aerial vehicles have been the subject of continued interest and development over the last seve...
In this paper, we consider the nonlinear modeling and control design for coupled longitudinal and la...
The paper presents two open loop methods to control the unstable, longitudinal oscillation of a flap...
This paper presents the results of a series of flight tests conducted in order to assess the steady-...
Compared with the tailless flapping wing micro air vehicle (FMAV), the tailed FMAV has a simpler str...
Performing highly aggressive maneuvers that push the capabilities of an aircraft typically requires ...
This paper discusses a methodology of analyzing the flight dynamic stability of a flapping wing Micr...
The analysis of the passive rotation feature of a micro Flapping Rotary Wing (FRW) applicable for Mi...
Despite widespread research into the possibilities of improving aerodynamic efficiency, a plateau se...
Micro aerial vehicles design represents a challenge that lasted for years and the fact that they ope...
This paper addresses the modeling of transient aerodynamic behavior at angles of attack near and wel...
This paper presents results from a wind tunnel investigation that sought to quantify stability and...
Thesis (M.A.)--Wichita State University, College of Engineering, Dept. of Aerospace EngineeringIn th...
This paper is focused on the model identification of a Micro Air Vehicle (MAV) in straight steady fl...