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Robotics engineering is a branch of engineering that focuses on the conception, design, manufacturing, and operation of robots. It involves a multidisciplinary approach, drawing primarily from mechanical , electrical , software , and artificial intelligence (AI) engineering .
Disabled, infant and older people care, housekeeping, sex-worker, flight-attendant, model, hostess, waiter, security guard Tesla bot: Gastrobot: Prototypes Robots fuelled by digesting organic matter Molecular nanotechnology, nanorobotics: Hypothetical, experiments [128] Machines that can make anything given the materials, cheap planetary ...
Others replace people in jobs that are boring, repetitive, or unpleasant, such as cleaning, monitoring, transporting, and assembling. Today, robotics is a rapidly growing field, as technological advances continue; researching, designing, and building new robots serve various practical purposes.
The following outline is provided as an overview of and topical guide to robotics: . Robotics is a branch of mechanical engineering, electrical engineering and computer science that deals with the design, construction, operation, and application of robots, as well as computer systems for their control, sensory feedback, and information processing.
Various robotics tasks that may require advances in robot hardware as well as AI, including: Stable bipedal locomotion: Bipedal robots can walk, but are less stable than human walkers (as of 2017) [60] Humanoid soccer [61] Speech recognition: "nearly equal to human performance" (2017) [62] Explainability. Current medical systems can diagnose ...
The simplicity of mobile industrial robots provide their main advantage in industrial settings due to the ease of use and ability to be operated via technologies well understood by most people. In addition, robots are able to operate almost continuously and will never complain about long work hours; greatly increasing efficiency in a lean ...
Robot economics is the study of the market for robots.Robot markets function through the interaction of robot makers and robot users. As (in part) a factor of production, robots are complements and/or substitutes for other factors, such as labor and (non-robot) capital goods.
Human–robot interaction (HRI) is the study of interactions between humans and robots.Human–robot interaction is a multidisciplinary field with contributions from human–computer interaction, artificial intelligence, robotics, natural language processing, design, psychology and philosophy.