under contract from the National Aeronautics and Space Administration. Abstract – The success of a landed space exploration mission depends largely on the final landing site. Factors influencing site selection include safety, fuel-consumption, and scientific return. This paper addresses the problem of selecting the best available landing site based on these factors in real-time during autonomous spacecraft descent onto a planetary surface. The problem is modeled probabilistically using Bayesian Networks (BNs). BNs provide a means of representing the causal relationships between variables that impact the quality of a landing site. The final landing site is determined via probabilistic reasoning based on terrain safety derived from on-board s...
With shrinking budgets and the requirements to increase reliability and operational life of the exis...
This paper presents an in-depth analysis of state-of-the-art semantic segmentation algorithms applie...
Abstract—Landing on distant planets is always a challenging task due to the distance and hostile env...
Landing site selection during UAS forced landings using decision making Bayesian network
AbstractLanding safety is the prior concern in planetary exploration missions. With the development ...
Future exploration strategies plan to land both human and robotics landers in scientifically interes...
Many successful landings have been performed on celestial bodies such as Mars, the Moon, Venus and o...
Future exploration missions will take place in areas of high scientific interest, which often consis...
In this paper, the problem of determining safe regions of the visible terrain for autonomous spacecr...
Autonomous Underwater Vehicles (AUVs) are effective platforms for science research and monitoring, a...
and Avoidance architecture, the Piloting function is tasked with selecting in real-time, during a de...
This paper describes how to exploit the modeling features and inference capabilities of dynamic Baye...
This thesis describes a framework for the high level control of an autonomous unmanned spacecraft. G...
In this paper a hazard detection and landing site selection algorithm, based on a single, visible li...
Autonomous Underwater Vehicles (AUVs) are effective platforms for science research and monitoring, a...
With shrinking budgets and the requirements to increase reliability and operational life of the exis...
This paper presents an in-depth analysis of state-of-the-art semantic segmentation algorithms applie...
Abstract—Landing on distant planets is always a challenging task due to the distance and hostile env...
Landing site selection during UAS forced landings using decision making Bayesian network
AbstractLanding safety is the prior concern in planetary exploration missions. With the development ...
Future exploration strategies plan to land both human and robotics landers in scientifically interes...
Many successful landings have been performed on celestial bodies such as Mars, the Moon, Venus and o...
Future exploration missions will take place in areas of high scientific interest, which often consis...
In this paper, the problem of determining safe regions of the visible terrain for autonomous spacecr...
Autonomous Underwater Vehicles (AUVs) are effective platforms for science research and monitoring, a...
and Avoidance architecture, the Piloting function is tasked with selecting in real-time, during a de...
This paper describes how to exploit the modeling features and inference capabilities of dynamic Baye...
This thesis describes a framework for the high level control of an autonomous unmanned spacecraft. G...
In this paper a hazard detection and landing site selection algorithm, based on a single, visible li...
Autonomous Underwater Vehicles (AUVs) are effective platforms for science research and monitoring, a...
With shrinking budgets and the requirements to increase reliability and operational life of the exis...
This paper presents an in-depth analysis of state-of-the-art semantic segmentation algorithms applie...
Abstract—Landing on distant planets is always a challenging task due to the distance and hostile env...