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IEEE Transactions on Cybernetics: Computational approaches in the area of cybernetics, accepting papers on topics relevant to control and communication across machines, or machine, human and organizations. Scope includes areas utilizing different computational methods as long as they contribute to the theme of cybernetics or demonstrate an ...
Institute of Radio Engineers (IRE) Transactions ceased publishing during 1962, and is now publishing instead as IEEE Transactions on Systems, Man, and Cybernetics: Systems, IEEE Transactions on Cybernetics, and IEEE Transactions on Human-Machine Systems. [15] [16]
Human machine system engineering is different from the more general and well known fields like human–computer interaction and sociotechnical engineering in that it focuses on complex, dynamic control systems that often are partially automated (such as flying an airplane). It also studies human problem-solving in naturalistic settings or in ...
Examples of the current state of progress in the field of robot skins as of mid-2022 are a robotic finger covered in a type of manufactured living human skin, [20] [21] an electronic skin giving biological skin-like haptic sensations and touch/pain-sensitivity to a robotic hand, [22] [23] a system of an electronic skin and a human-machine ...
Circuits and Systems for Video Technology, IEEE Transactions on; Circuits and Systems I: Regular Papers, IEEE Transactions on; Circuits and Systems II: Express Briefs, IEEE Transactions on; Circuits and Systems, IEEE Open Journal of; Circuit Theory, IEEE Transactions on (originally named Circuit Theory, IRE Transactions on) Cloud Computing ...
Cognitive systems engineering (CSE) is a specific approach to the description and analysis of human-machine systems or sociotechnical systems. [47] The three main themes of CSE are how humans cope with complexity, how work is accomplished by the use of artifacts , and how human-machine systems and socio-technical systems can be described as ...
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. A subfield known as physical human–robot ...
Neuromorphic engineering is an interdisciplinary subject that takes inspiration from biology, physics, mathematics, computer science, and electronic engineering [4] to design artificial neural systems, such as vision systems, head-eye systems, auditory processors, and autonomous robots, whose physical architecture and design principles are ...