Uploaded September 2020 | Updated September 2026, 1 week ago
The virtual laboratory setup that is connected to the internet through a USB controller which can be accessed and controlled from the server. Using a software GUI interface on user side to perform experiments in hardware on client side. A student can work with the experiments without need to be present in the laboratory. Here the approach in hardware and software architecture design for implementation of remote laboratories for automatic control is used.
This system discusses a RAL system that enables peer-to-peer (P2P) experimental design and sharing. An extra compilation software step is required to execute the code to communicate with the target MCU. The RAL require three subsystems handling the user interface, instruction interpretation, and instruction execution. Student can do experiment directly with the laboratory experiment set-up.
The virtual laboratory setup that is connected to the internet through a USB controller which can be accessed and controlled from the server. Using a software GUI interface on user side to perform experiments in hardware on client side. A student can work with the experiments without need to be present in the laboratory. Here the approach in hardware and software architecture design for implementation of remote laboratories for automatic control is used.
This system discusses a RAL system that enables peer-to-peer (P2P) experimental design and sharing. An extra compilation software step is required to execute the code to communicate with the target MCU. The RAL require three subsystems handling the user interface, instruction interpretation, and instruction execution. Student can do experiment directly with the laboratory experiment set-up.










