Robotics and automation

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These are unmanned surface or underwater vehicles that can be used to clear mines or conduct reconnaissance missions.

Robotics basics: An introduction to the fundamental concepts and principles of robotics, such as sensors, actuators, controllers, and programming.
Robotics ethics: The study of the moral and ethical considerations related to the use of robotics and automation in military contexts, including their impact on human safety, privacy, and security.
Military applications of robotics: The exploration of how robots and automation are being developed and used in the military sector, including bomb disposal, reconnaissance, and search and rescue.
Robot design and construction: The process of designing and building robots, including the selection of hardware and software components, materials, and fabrication techniques.
Programming for robotics: An overview of programming languages and software development tools used for creating robot control systems, as well as the basics of robot programming and behavior.
Sensing and perception: The use of sensors and perception techniques for collecting and interpreting data about the environment, including vision, audio, and infrared sensors.
Actuation and control: The study of methods for controlling and manipulating robots, including motor control, motion planning, and path-finding algorithms.
Artificial intelligence and machine learning: The application of AI and ML methods for enabling robots to perform complex tasks and adapt to changing environments.
Human-robot interaction: The study of how humans interact with robots, including issues like safety, trust, and communication.
Robot ethics and governance: The study of ethical and legal frameworks for regulating the development and use of robotics and automation technologies in military contexts, including issues such as accountability, transparency, and responsibility.
Industrial Robotics: These systems are designed for use in manufacturing and assembly lines. They are used to automate repetitive and dangerous manual tasks that human workers previously performed in the past. They are commonly found in the automotive, electronics, and semiconductor industries.
Medical Robotics: These systems are designed to assist in medical procedures, which includes surgical assistance, rehabilitation, and monitoring. They enable surgeons to perform complex surgeries with greater precision and control.
Domestic Robotics: These robots are designed to perform household tasks such as cleaning, cooking, and laundry. They are becoming increasingly popular as they help to reduce the workload of busy individuals.
Military Robotics: Military robots are designed to perform tasks that are too dangerous, difficult or time-consuming for human soldiers. These include reconnaissance, mine clearance, and bomb disposal.
Agricultural Robotics: These robots are designed to help farmers with various agricultural tasks, such as harvesting crops, planting, weeding, and spraying pesticides. They use sensors and other technologies to improve farm efficiency and yield.
Entertainment Robotics: These robot systems are designed to provide entertainment to people. They include toys, pet robots, and amusement park rides.
Space Robotics: Space robots help with tasks related to space exploration, which includes maintenance, assembly and repair of satellites, and collection of data.
Educational Robotics: These robots are designed for educational purposes, which includes programming and robotics classes for children and teenagers. They are designed to teach programming and engineering concepts.
Construction Robotics: These robots are designed to help in construction work, including bricklaying, painting, and welding. They also help to reduce the workload of human workers and ensure safety in construction sites.
Service Robotics: These robots are designed to perform various services for people, including transportation, security, and customer service.
Transportation Robotics: These systems include autonomous cars, trucks, and drones that help to transport goods and people from one place to another. They help to save time and reduce labor costs in transportation.
"Unmanned underwater vehicles (UUV), sometimes known as underwater drones..."
"...submersible vehicles that can operate underwater..."
"These vehicles may be divided into two categories..."
"ROUVs are remotely controlled by a human operator."
"AUVs are automated and operate independently of direct human input."
"ROUVs are remotely controlled by a human operator." "AUVs are automated and operate independently of direct human input."
"Unmanned underwater vehicles..."
"...without a human occupant."
"ROUVs are remotely controlled by a human operator."
"AUVs... operate independently of direct human input."
"ROUVs are remotely controlled by a human operator." "AUVs... operate independently of direct human input."
"ROUVs are remotely controlled by a human operator."
"AUVs are automated and operate independently of direct human input."
"...remotely operated by a human operator." "...operate independently of direct human input."
"Operate independently of direct human input."
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