Cartographie et localisation simultanéesvignette|Une carte générée par le robot Darmstadt. La localisation et cartographie simultanées, connue en anglais sous le nom de SLAM (simultaneous localization and mapping) ou CML (concurrent mapping and localization), consiste, pour un robot ou véhicule autonome, à simultanément construire ou améliorer une carte de son environnement et de s’y localiser. La plupart des robots industriels sont fixes et effectuent des tâches dans un environnement connu.
Planification de mouvementLa planification de mouvement (en anglais motion planning) est un ensemble de techniques mathématiques et informatiques permettant de calculer des trajectoires pour un système cinématique, avec pour contrainte l'absence de collision. Il existe deux principales catégories de méthodes pour la planification de mouvement : La première est composée de méthodes dites déterministes, appelées ainsi car elles permettent de retrouver le même chemin à chaque exécution, sous réserve d'avoir des conditions initiales équivalentes.
Legged robotLegged robots are a type of mobile robot which use articulated limbs, such as leg mechanisms, to provide locomotion. They are more versatile than wheeled robots and can traverse many different terrains, though these advantages require increased complexity and power consumption. Legged robots often imitate legged animals, such as humans or insects, in an example of biomimicry. Legged robots, or walking machines, are designed for locomotion on rough terrain and require control of leg actuators to maintain balance, sensors to determine foot placement and planning algorithms to determine the direction and speed of movement.
Exploration du système martienvignette|Le sol de Mars photographié par Viking 1 en 1975. vignette|Burns Cliff, affleurement rocheux à l'intérieur du cratère Endurance photographié par le rover MER Opportunity en 2004. vignette|Selfie de Curiosity pris en 2012dans le cratère Gale. L’exploration du système martien, qui comprend la planète Mars et ses deux satellites, tient une place particulièrement importante dans les programmes scientifiques d'exploration du Système solaire des principales puissances spatiales.
Terrestrial locomotionTerrestrial locomotion has evolved as animals adapted from aquatic to terrestrial environments. Locomotion on land raises different problems than that in water, with reduced friction being replaced by the increased effects of gravity. As viewed from evolutionary taxonomy, there are three basic forms of animal locomotion in the terrestrial environment: legged – moving by using appendages limbless locomotion – moving without legs, primarily using the body itself as a propulsive structure.
Rotating locomotion in living systemsSeveral organisms are capable of rolling locomotion. However, true wheels and propellers—despite their utility in human vehicles—do not seem to play a significant role in the movement of living things (with the exception of certain flagella, which work like corkscrews). Biologists have offered several explanations for the apparent absence of biological wheels, and wheeled creatures have appeared often in speculative fiction.
OpportunityOpportunity (« Opportunité, Occasion » en anglais), alias MER-B (Mars Exploration Rover - B), est la deuxième astromobile de la mission Mars Exploration Rover de l'agence spatiale américaine, la NASA, lancé vers la planète Mars en 2003. L'engin qui s'est posé sur Mars le dans la région équatoriale de Terra Meridiani avait pour but d'étudier la géologie de Mars et de déterminer en particulier le rôle joué par l'eau dans l'histoire de la planète. Sa mission qui devait durer 90 jours s'est achevée officiellement en février 2019.
Mars roverA Mars rover is a motor vehicle designed to travel on the surface of Mars. Rovers have several advantages over stationary landers: they examine more territory, they can be directed to interesting features, they can place themselves in sunny positions to weather winter months, and they can advance the knowledge of how to perform very remote robotic vehicle control. They serve a different purpose than orbital spacecraft like Mars Reconnaissance Orbiter. A more recent development is the Mars helicopter.
Positioning systemA positioning system is a system for determining the position of an object in space. One of the most well-known and commonly used positioning systems is the Global Positioning System (GPS). Positioning system technologies exist ranging from worldwide coverage with meter accuracy to workspace coverage with sub-millimeter accuracy. Interplanetary-radio communication systems not only communicate with spacecraft, but they are also used to determine their position.
Robot navigationRobot localization denotes the robot's ability to establish its own position and orientation within the frame of reference. Path planning is effectively an extension of localisation, in that it requires the determination of the robot's current position and a position of a goal location, both within the same frame of reference or coordinates. Map building can be in the shape of a metric map or any notation describing locations in the robot frame of reference. For any mobile device, the ability to navigate in its environment is important.