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mBlock 3 is a block-based programming software based on Scratch 2.0. It interacts with Makeblock controller boards and other Arduino-based hardware, allowing users to create interactive hardware applications. The block-based code can be converted to Arduino C and supports various operating systems including macOS, Windows, Linux, and Chromebook ...
OpenPicus – platform for smart sensors and Internet of things; Sun SPOT – hardware–software platform for sensor networks and battery powered, wireless, embedded development; USRP – universal software radio peripheral is a mainboard with snap in modules providing software defined radio at different frequencies, has USB 2.0 link to a host ...
Distributed Proofreaders (commonly abbreviated as DP or PGDP) is a Web-based project founded in 2000 by Charles Franks that supports the development of e-texts for Project Gutenberg by allowing many people to work together in proofreading drafts of e-texts for errors. As of October 2011, over 21,000 e-texts have been produced by DP.
Blue Brain Project, Human Brain Project: Brain–computer interface: Research and commercialization Faster communication and learning, as well as more "real" entertainment (generation of feelings and information in brain on-demand) and the control of emotions in the mentally ill [112] Experience machine, Neuralink, Stent-electrode recording array
This is a comprehensive list of volunteer computing projects, which are a type of distributed computing where volunteers donate computing time to specific causes. The donated computing power comes from idle CPUs and GPUs in personal computers, video game consoles, [1] and Android devices.
Mechatronics engineering, also called mechatronics, is an interdisciplinary branch of engineering that focuses on the integration of mechanical engineering, electrical engineering, electronic engineering and software engineering, [1] and also includes a combination of robotics, computer science, telecommunications, systems, control, automation and product engineering.
The industrial internet of things (IIoT) refers to interconnected sensors, instruments, and other devices networked together with computers' industrial applications, including manufacturing and energy management. This connectivity allows for data collection, exchange, and analysis, potentially facilitating improvements in productivity and ...
In addition to utilizing many established features of robot controllers, such as position, velocity and force control of end effectors, they also enable IoT interconnection and the implementation of more advanced sensor fusion and control techniques, including adaptive control, Fuzzy control and Artificial Neural Network (ANN)-based control. [52]