Future missions to the Moon and Mars will require advanced guidance navigation and control algorithms for the powered descent phase. These algorithm should be capable of reconstructing the state of the spacecraft using the inputs from an array of sensors and apply the required command to ensure pinpoint landing accuracy, possibly in an optimal way. This has historically been solved using off-line architectures that rely on the computation of the optimal trajectory beforehand which is then used to drive the controller. The advent of machine learning and artificial intelligence has opened new possibilities for closed-loop optimal guidance. Specifically, the use of reinforcement learning can lead to intelligent systems that learn from a simula...
Precision landing on large planetary bodies is an important technology that enables future human and...
Precision landing on large planetary bodies is an important technology that enables future human and...
Precision landing on large planetary bodies is an important technology that enables future human and...
Future exploration and human missions on large planetary bodies (e.g., moon, Mars) will require adva...
Future missions to the Moon and Mars will require advanced Guidance, Navigation, and Control (GNC) a...
Future missions to the Moon and Mars will require advanced Guidance, Navigation, and Control (GNC) a...
© 2020 COSPAR This work develops a deep reinforcement learning based approach for Six Degree-of-Free...
Over the past few years, encouraged by advancements in parallel computing technologies (e.g., Graphi...
Over the past few years, encouraged by advancements in parallel computing technologies (e.g., Graphi...
Over the past few years, encouraged by advancements in parallel computing technologies (e.g., Graphi...
Over the past few years, encouraged by advancements in parallel computing technologies (e.g., Graphi...
The aim of this work is to develop an application for autonomous landing. We exploit the properties ...
© 2020, Univelt Inc. All rights reserved. Precision landing on large planetary bodies is an importan...
Precision landing on large planetary bodies is an important technology that enables future human and...
© 2020, Univelt Inc. All rights reserved. Precision landing on large planetary bodies is an importan...
Precision landing on large planetary bodies is an important technology that enables future human and...
Precision landing on large planetary bodies is an important technology that enables future human and...
Precision landing on large planetary bodies is an important technology that enables future human and...
Future exploration and human missions on large planetary bodies (e.g., moon, Mars) will require adva...
Future missions to the Moon and Mars will require advanced Guidance, Navigation, and Control (GNC) a...
Future missions to the Moon and Mars will require advanced Guidance, Navigation, and Control (GNC) a...
© 2020 COSPAR This work develops a deep reinforcement learning based approach for Six Degree-of-Free...
Over the past few years, encouraged by advancements in parallel computing technologies (e.g., Graphi...
Over the past few years, encouraged by advancements in parallel computing technologies (e.g., Graphi...
Over the past few years, encouraged by advancements in parallel computing technologies (e.g., Graphi...
Over the past few years, encouraged by advancements in parallel computing technologies (e.g., Graphi...
The aim of this work is to develop an application for autonomous landing. We exploit the properties ...
© 2020, Univelt Inc. All rights reserved. Precision landing on large planetary bodies is an importan...
Precision landing on large planetary bodies is an important technology that enables future human and...
© 2020, Univelt Inc. All rights reserved. Precision landing on large planetary bodies is an importan...
Precision landing on large planetary bodies is an important technology that enables future human and...
Precision landing on large planetary bodies is an important technology that enables future human and...
Precision landing on large planetary bodies is an important technology that enables future human and...