This paper investigates the use of pulsar-based navigation for deep-space CubeSats. A novel approach for dealing with the onboard computation of navigational solutions and timekeeping capabilities of a spacecraft in a deep-space cruise is shown, and the related implementation and numerical simulations are discussed. The pulsar’s signal detection, processing, and exploitation are simulated for navigation onboard a spacecraft, thus showing the feasibility of autonomous state estimation in deep space even for miniaturized satellites
University of Minnesota M.S. thesis. September 2013. Major: Aerospace Engineering and Mechanics. Adv...
In this work, an orbit determination algorithm suitable for CubeSats onboard implementation is devel...
In this work, an orbit determination algorithm suitable for CubeSats onboard implementation is devel...
This paper investigates the use of pulsar-based navigation for deep-space CubeSats. A novel approach...
This paper investigates the use of pulsar-based navigation for deep-space CubeSats. A novel approach...
Nowadays, deep-space navigation strongly depends on ground segments, e.g., ESA's European Space Trac...
Interstellar navigation poses significant challenges in all aspects of a spacecraft. One of them is ...
Interstellar navigation poses significant challenges in all aspects of a spacecraft. One of them is ...
Navigation based on X-ray pulsars was first suggested in 1981 for deep space navigation as an altern...
Onboard measurements of periodic x-ray signals from highly stable, rapidly spinning stars called pul...
X-ray pulsars are potential aids to spacecraft navigation due to the periodicity, uniqueness, and st...
We investigate the feasibility of deep-space navigation using the highly stable periodic signals fro...
We investigate the feasibility of deep-space navigation using the highly stable periodic signals fro...
Abstract—We discuss the possibility of an autonomous navi-gation system for spacecraft that is based...
Millisecond pulsars are extremely stable and rapidly rotating neutron stars that emit electromagneti...
University of Minnesota M.S. thesis. September 2013. Major: Aerospace Engineering and Mechanics. Adv...
In this work, an orbit determination algorithm suitable for CubeSats onboard implementation is devel...
In this work, an orbit determination algorithm suitable for CubeSats onboard implementation is devel...
This paper investigates the use of pulsar-based navigation for deep-space CubeSats. A novel approach...
This paper investigates the use of pulsar-based navigation for deep-space CubeSats. A novel approach...
Nowadays, deep-space navigation strongly depends on ground segments, e.g., ESA's European Space Trac...
Interstellar navigation poses significant challenges in all aspects of a spacecraft. One of them is ...
Interstellar navigation poses significant challenges in all aspects of a spacecraft. One of them is ...
Navigation based on X-ray pulsars was first suggested in 1981 for deep space navigation as an altern...
Onboard measurements of periodic x-ray signals from highly stable, rapidly spinning stars called pul...
X-ray pulsars are potential aids to spacecraft navigation due to the periodicity, uniqueness, and st...
We investigate the feasibility of deep-space navigation using the highly stable periodic signals fro...
We investigate the feasibility of deep-space navigation using the highly stable periodic signals fro...
Abstract—We discuss the possibility of an autonomous navi-gation system for spacecraft that is based...
Millisecond pulsars are extremely stable and rapidly rotating neutron stars that emit electromagneti...
University of Minnesota M.S. thesis. September 2013. Major: Aerospace Engineering and Mechanics. Adv...
In this work, an orbit determination algorithm suitable for CubeSats onboard implementation is devel...
In this work, an orbit determination algorithm suitable for CubeSats onboard implementation is devel...