Optimisation de codeEn programmation informatique, l'optimisation de code est la pratique consistant à améliorer l'efficacité du code informatique d'un programme ou d'une bibliothèque logicielle. Ces améliorations permettent généralement au programme résultant de s'exécuter plus rapidement, de prendre moins de place en mémoire, de limiter sa consommation de ressources (par exemple les fichiers), ou de consommer moins d'énergie électrique. La règle numéro un de l'optimisation est qu'elle ne doit intervenir qu'une fois que le programme fonctionne et répond aux spécifications fonctionnelles.
Marche à piedLa marche est un mode de locomotion naturel chez l'homme. Elle consiste en un déplacement en appui alternatif sur les pieds, en position debout et en ayant toujours au moins un point d'appui en contact avec le sol, sinon il s'agit de course. C'est un des principaux modes de déplacement, qui fait partie des modes dits « fatigants », « doux » ou « actifs », comme des moyens de transport tels que la bicyclette, la trottinette ou le patinage à roulettes, par opposition aux modes de transport motorisés parfois dits « passifs ».
Robotiquethumb|upright=1.5|Nao, un robot humanoïde. thumb|upright=1.5|Des robots industriels au travail dans une usine. La robotique est l'ensemble des techniques permettant la conception et la réalisation de machines automatiques ou de robots. L'ATILF donne la définition suivante du robot : « il effectue, grâce à un système de commande automatique à base de microprocesseur, une tâche précise pour laquelle il a été conçu dans le domaine industriel, scientifique, militaire ou domestique ».
Human legThe human leg is the entire lower limb of the human body, including the foot, thigh or sometimes even the hip or buttock region. The major bones of the leg are the femur (thigh bone), tibia (shin bone), and adjacent fibula. The thigh is between the hip and knee, while the calf (rear) and shin (front) are between the knee and foot. Legs are used for standing, many forms of human movement, recreation such as dancing, and constitute a significant portion of a person's mass.
Undulatory locomotionUndulatory locomotion is the type of motion characterized by wave-like movement patterns that act to propel an animal forward. Examples of this type of gait include crawling in snakes, or swimming in the lamprey. Although this is typically the type of gait utilized by limbless animals, some creatures with limbs, such as the salamander, forgo use of their legs in certain environments and exhibit undulatory locomotion. In robotics this movement strategy is studied in order to create novel robotic devices capable of traversing a variety of environments.
Design methodsDesign methods are procedures, techniques, aids, or tools for designing. They offer a number of different kinds of activities that a designer might use within an overall design process. Conventional procedures of design, such as drawing, can be regarded as design methods, but since the 1950s new procedures have been developed that are more usually grouped together under the name of "design methods". What design methods have in common is that they "are attempts to make public the hitherto private thinking of designers; to externalise the design process".
Fish locomotionFish locomotion is the various types of animal locomotion used by fish, principally by swimming. This is achieved in different groups of fish by a variety of mechanisms of propulsion, most often by wave-like lateral flexions of the fish's body and tail in the water, and in various specialised fish by motions of the fins.
Robotic sensingRobotic sensing is a subarea of robotics science intended to provide sensing capabilities to robots. Robotic sensing provides robots with the ability to sense their environments and is typically used as feedback to enable robots to adjust their behavior based on sensed input. Robot sensing includes the ability to see, touch, hear and move and associated algorithms to process and make use of environmental feedback and sensory data.
Robotique molleLa robotique molle () est un domaine de la robotique. Ce domaine traite des « robots mous » incluant certains types de drones, et construits en matériaux ou structures souples, élastiques ou déformables tels que le silicone, le plastique, le caoutchouc et autres polymères, les tissus, etc., ou des pièces mécaniques déformables utilisées en robotique, par exemple les ressorts, les élastiques ou les absorbeurs de chocs ou de vibrations.
Interprocedural optimizationInterprocedural optimization (IPO) is a collection of compiler techniques used in computer programming to improve performance in programs containing many frequently used functions of small or medium length. IPO differs from other compiler optimizations by analyzing the entire program as opposed to a single function or block of code. IPO seeks to reduce or eliminate duplicate calculations and inefficient use of memory and to simplify iterative sequences such as loops.