TY - JOUR
T1 - Integration of Robotic Systems for Human Space Exploration
T2 - 74th International Astronautical Congress, IAC 2023
AU - Diaz-Alvarez, David A.
AU - Lopez-Zapata, Samuel
AU - Botero, Maria Alejandra Botero
AU - Sandoval, Manuel O.
AU - Zapata, Sebastian
AU - Turizo-Donado, Angélica
N1 - Publisher Copyright:
Copyright © 2023 by Universidad de Antioquia. Published by the IAF, with permission and released to the IAF to publish in all forms.
PY - 2023
Y1 - 2023
N2 - Human space exploration addresses challenges such as exploring unfamiliar terrain, conducting offstation operations, and doing science in extreme conditions. The use of robotics systems enables human exploration reducing risks to humans by providing important information. The EAR (Robot Assisted Exploration) crew performed an analog mission in the HAdEES-C habitat in September 2022, to test the integration of drones and a rover in assisting exploration protocols and operations in a space simulate environment. The crew simulated emergency situations, where commercial drones such as the DJI Mavic and the owned exploration rover SARA were used. As part of the simulation, the crew lost communication during spacewalks or were injured and had to be assisted. Time was taken to compare the assistance with and without the robotic systems. Spacewalks were repeated to understand the use of these tools, and repair tasks were executed with drone observation. The integration of drones and rovers in assisting exploration protocols showed improvement in the accuracy of communication between the ground station and the crew members performing the EVA, reducing the response time in emergency situations. Through direct visualization of different operational tasks, the execution time was also reduced. The drone also served as a communication channel in case the telecommunications failed between the crew and the habitat. The experience demonstrated that the use of autonomous robotic systems is essential to assist spacewalks and exploration protocols. Human and robotic interactions provided continuous control of spacewalks, performing efficient decision making and providing situational awareness on the ground station. The integration of autonomous robotic systems with humans needs to be applied to specific objectives on planets such as Mars to enable successful exploration missions.
AB - Human space exploration addresses challenges such as exploring unfamiliar terrain, conducting offstation operations, and doing science in extreme conditions. The use of robotics systems enables human exploration reducing risks to humans by providing important information. The EAR (Robot Assisted Exploration) crew performed an analog mission in the HAdEES-C habitat in September 2022, to test the integration of drones and a rover in assisting exploration protocols and operations in a space simulate environment. The crew simulated emergency situations, where commercial drones such as the DJI Mavic and the owned exploration rover SARA were used. As part of the simulation, the crew lost communication during spacewalks or were injured and had to be assisted. Time was taken to compare the assistance with and without the robotic systems. Spacewalks were repeated to understand the use of these tools, and repair tasks were executed with drone observation. The integration of drones and rovers in assisting exploration protocols showed improvement in the accuracy of communication between the ground station and the crew members performing the EVA, reducing the response time in emergency situations. Through direct visualization of different operational tasks, the execution time was also reduced. The drone also served as a communication channel in case the telecommunications failed between the crew and the habitat. The experience demonstrated that the use of autonomous robotic systems is essential to assist spacewalks and exploration protocols. Human and robotic interactions provided continuous control of spacewalks, performing efficient decision making and providing situational awareness on the ground station. The integration of autonomous robotic systems with humans needs to be applied to specific objectives on planets such as Mars to enable successful exploration missions.
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M3 - Conference article
AN - SCOPUS:85187998466
SN - 0074-1795
VL - 2023-October
JO - Proceedings of the International Astronautical Congress, IAC
JF - Proceedings of the International Astronautical Congress, IAC
Y2 - 2 October 2023 through 6 October 2023
ER -