In this article, we present methods to optimize the design and flight characteristics of a biologically inspired bat-like robot. In previous, work we have designed the topological structure for the wing kinematics of this robot; here we present methods to optimize the geometry of this structure, and to compute actuator trajectories such that its wingbeat pattern closely matches biological counterparts. Our approach is motivated by recent studies on biological bat flight that have shown that the salient aspects of wing motion can be accurately represented in a low-dimensional space. Although bats have over 40 degrees of freedom (DoFs), our robot possesses several biologically meaningful morphing specializations. We use principal component an...
This work examines the control of nonlinear dynamic systems to synthesize a flight controller for Ba...
This work examines the control of nonlinear dynamic systems to synthesize a flight controller for Ba...
This image displays the bio-inspired robotic Bat Bot (B2), a state-of-the-art flying machine that mi...
In this thesis we present methods to optimize the design and flight characteristics of a biologicall...
In this article, we present methods to optimize the design and flight characteristics of a biologica...
In this article, we present methods to optimize the design and flight characteristics of a biologica...
In this thesis we present methods to optimize the design and flight characteristics of a biologicall...
Recent works have shown success in mimicking the flapping flight of bats on the robotic platform Bat...
Recent works have shown success in mimicking the flapping flight of bats on the robotic platform Bat...
In recent years, few works [1] have applied rigorous mathematics to design sophisticated flapping mo...
It is challenging to analyze the aerial locomotion of bats because of the complicated and intricate ...
It is challenging to analyze the aerial locomotion of bats because of the complicated and intricate ...
It is challenging to analyze the aerial locomotion of bats because of the complicated and intricate ...
This paper presents a systematic flight controller design based on the mathematics of parametrized m...
This paper presents a systematic flight controller design based on the mathematics of parametrized m...
This work examines the control of nonlinear dynamic systems to synthesize a flight controller for Ba...
This work examines the control of nonlinear dynamic systems to synthesize a flight controller for Ba...
This image displays the bio-inspired robotic Bat Bot (B2), a state-of-the-art flying machine that mi...
In this thesis we present methods to optimize the design and flight characteristics of a biologicall...
In this article, we present methods to optimize the design and flight characteristics of a biologica...
In this article, we present methods to optimize the design and flight characteristics of a biologica...
In this thesis we present methods to optimize the design and flight characteristics of a biologicall...
Recent works have shown success in mimicking the flapping flight of bats on the robotic platform Bat...
Recent works have shown success in mimicking the flapping flight of bats on the robotic platform Bat...
In recent years, few works [1] have applied rigorous mathematics to design sophisticated flapping mo...
It is challenging to analyze the aerial locomotion of bats because of the complicated and intricate ...
It is challenging to analyze the aerial locomotion of bats because of the complicated and intricate ...
It is challenging to analyze the aerial locomotion of bats because of the complicated and intricate ...
This paper presents a systematic flight controller design based on the mathematics of parametrized m...
This paper presents a systematic flight controller design based on the mathematics of parametrized m...
This work examines the control of nonlinear dynamic systems to synthesize a flight controller for Ba...
This work examines the control of nonlinear dynamic systems to synthesize a flight controller for Ba...
This image displays the bio-inspired robotic Bat Bot (B2), a state-of-the-art flying machine that mi...