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Automation

technology Maturity 7-9

Machines can do jobs by themselves.

Factory Automation Robotics Palettizing Bread.jpg
Factory Automation Robotics Palettizing Bread.jpg
They help make things very fast. This helps us save time and food. It makes things work well. Machines do a lot of work for us.
016 Coca-Cola vending machine at Kyoto Station, Japan - コカコーラ 自動販売機.JPG
016 Coca-Cola vending machine at Kyoto Station, Japan - コカコーラ 自動販売機.JPG
Do you see machines working?

53 words

Machines can do jobs by themselves.

Factory Automation Robotics Palettizing Bread.jpg
Factory Automation Robotics Palettizing Bread.jpg
This is called automation. It means machines make decisions. They can work with less help from people.

Some machines use parts like water or air. Others use computers to work.

Automated online assistant.png
Automated online assistant.png
These tools help make things very fast. They also help save money and power.

Long ago, people made water clocks.

Clepsydra-Diagram-Fancy.jpeg
Clepsydra-Diagram-Fancy.jpeg
These clocks used water to keep time. Later, machines helped make glass bottles. One machine made many bottles very quickly.

Automation is used in many places. It helps steer big ships. It also helps run big factories. It even helps make medicine.

Machines help our world work well.

113 words

Automation is a way to make machines work with less help from people.

Control room pt tupper.jpg
Control room pt tupper.jpg
Machines use pre-set rules to make decisions. They can use many tools to do this. Some use air or water. Others use electricity or computers.
Factory Automation Robotics Palettizing Bread.jpg
Factory Automation Robotics Palettizing Bread.jpg
This helps make things faster and more accurate. It also saves money and power.

One way machines work is through a loop. A controller checks a value. It compares that value to a goal. If there is a difference, the machine makes a change. This keeps things steady. We call this negative feedback.

People have used this for a long time. In ancient Egypt, Ctesibius made a water clock.

Clepsydra-Diagram-Fancy.jpeg
Clepsydra-Diagram-Fancy.jpeg
It used a float to control water. Later, the flyball governor helped steam engines.
Catalonia Terrassa mNATEC MaquinaDeVapor ReguladorDeWatt.jpg
Catalonia Terrassa mNATEC MaquinaDeVapor ReguladorDeWatt.jpg
It used moving weights to keep engine speed steady. Today, automation is everywhere. It helps make medicine and run big factories.
Automated liquid oral dose.jpg
Automated liquid oral dose.jpg
It even helps steer large ships.

167 words

Automation is a way to make machines work with less help from people.

Control room pt tupper.jpg
Control room pt tupper.jpg
It uses technology to follow pre-set rules. These rules tell machines how to make decisions and act. Machines can use many different things to do this work. Some use air or water pressure to move. Others use electricity, electronic parts, or even computers.
Factory Automation Robotics Palettizing Bread.jpg
Factory Automation Robotics Palettizing Bread.jpg
This helps industries save money on labor and materials. It also helps save electricity and reduces waste. Using automation makes making things more accurate and precise.

One common way it works is through a closed-loop control system.

PID en.svg
PID en.svg
In this setup, a controller checks a specific value. It compares that value to a goal called a set point. If the two numbers are different, the machine finds the error. The controller then changes an input to fix that error. This process is called negative feedback. It helps the system stay steady even when things change.
Automated liquid oral dose.jpg
Automated liquid oral dose.jpg
A simple example is a thermostat in a house. It controls a boiler to keep the room at one temperature.

People have used automatic ideas for a very long time.

Clepsydra-Diagram-Fancy.jpeg
Clepsydra-Diagram-Fancy.jpeg
Around 270 BC, Ctesibius described a float regulator for a water clock. This was one of the earliest feedback-controlled tools. Later, in 850 AD, the Banū Mūsā brothers described automatic controls. They even made two-step level controls for liquids. In the 1600s, Christiaan Huygens invented the centrifugal governor. This device helped adjust the gap between millstones.
Catalonia Terrassa mNATEC MaquinaDeVapor ReguladorDeWatt.jpg
Catalonia Terrassa mNATEC MaquinaDeVapor ReguladorDeWatt.jpg
These early inventors used trial-and-error to make things work.

Many big changes happened during the Industrial Revolution.

Tower bridge steam engine.jpg
Tower bridge steam engine.jpg
Steam engines needed ways to control their speed and power. In 1745, Jacques de Vaucanson made the first automated loom. Around 1800, Joseph Marie Jacquard used punch cards to program looms. In 1771, Richard Arkwright made a spinning mill driven by water. By 1785, Oliver Evans made the first fully automated industrial process.
Workmaster.jpg
Workmaster.jpg
In the 1940s, the term automation became more common. Ford established an automation department during that time. This helped industries adopt many new feedback controllers.

Today, automation is part of almost everything we use.

016 Coca-Cola vending machine at Kyoto Station, Japan - コカコーラ 自動販売機.JPG
016 Coca-Cola vending machine at Kyoto Station, Japan - コカコーラ 自動販売機.JPG
It helps steer ships and fly airplanes with less human help. It is also used in big factories to make glass bottles.
Automated side loader operation.webm
Automated side loader operation.webm
One machine in 1905 could make 17,280 bottles in a single day. This was much faster than people working by hand. Automation also helps run telephone networks and large power stations. Even modern online assistants use these smart, automatic ideas. It is a huge part of how our world works.

453 words

Automation is a broad range of technologies designed to reduce human intervention in various processes.

Control room pt tupper.jpg
Control room pt tupper.jpg
It works by predetermining decision criteria, subprocess relationships, and specific actions. These predetermined rules are then embodied within machines. Automation can be achieved through many different means. These include mechanical, hydraulic, pneumatic, electrical, and electronic devices. In many modern, complicated systems, these methods are used in combination. Examples include modern factories, airplanes, and large ships. By using these technologies, industries can achieve significant benefits. These include labor savings and reduced waste. Automation also helps save on electricity and material costs. Furthermore, it leads to improvements in quality, accuracy, and precision.

A fundamental mechanism in automation is the closed-loop control system.

PID en.svg
PID en.svg
This system relies on a process called negative feedback. In the simplest version, a controller compares a measured value of a process against a desired set value. If there is a difference, the controller identifies this as an error signal. The controller then processes this signal to change an input to the process. This adjustment ensures the process stays at its set point, even when disturbances occur. A common household example is a thermostat controlling a boiler. On a larger scale, industrial systems may use tens of thousands of input measurements and output control signals to maintain stability.

Automation technologies can be categorized by the medium they use to function. Some systems are purely mechanical, while others use fluids through hydraulic or pneumatic means. Many modern systems rely on electrical and electronic devices to process information. The most advanced systems utilize computers to manage complex decision-making. These different types often work together in a single machine. For example, a large industrial plant might use pneumatic valves controlled by electronic sensors and a central computer. This combination allows for the high level of precision required in modern manufacturing.

The history of automatic control stretches back to ancient times.

Clepsydra-Diagram-Fancy.jpeg
Clepsydra-Diagram-Fancy.jpeg
Between 300 BC and 1200 AD, Greek and Arab scholars focused on accurate timekeeping. Around 270 BC, Ctesibius described a float regulator for a water clock in Ptolemaic Egypt. This was one of the earliest known feedback-controlled mechanisms. In 850 AD, the Persian Banū Mūsā brothers described several automatic controls in their Book of Ingenious Devices. They developed two-step level controls for fluids, which is a form of discontinuous variable structure control. For centuries, these designs relied on engineering intuition and trial-and-error rather than formal math.

The Industrial Revolution brought rapid advancements in control technology. Steam engines created a vital need to control engine speed and power. This led to the invention of various regulators, such as temperature regulators in 1624 and pressure regulators in 1681. In 1745, Jacques de Vaucanson invented the first automated loom. Around 1800, Joseph Marie Jacquard developed a punch-card system to program these looms. By 1785, Oliver Evans developed an automatic flour mill, marking the first completely automated industrial process.

Tower bridge steam engine.jpg
Tower bridge steam engine.jpg
Another major milestone was the centrifugal governor. Christiaan Huygens invented it in the 17th century, and James Watt later adopted it for steam engines in 1788.
Catalonia Terrassa mNATEC MaquinaDeVapor ReguladorDeWatt.jpg
Catalonia Terrassa mNATEC MaquinaDeVapor ReguladorDeWatt.jpg
While it could not maintain a perfectly constant speed, it helped manage fluctuations in heat load.

The 20th century saw the rise of electronic and digital automation. During the 1920s, factory electrification introduced relay logic. In the 1940s and 1950s, the term "automation" became more widely used, notably after Ford established an automation department. Mathematical advancements, such as the work of German mathematician Irmgard Flügge-Lotz on discontinuous automatic controls, provided deeper theoretical foundations. By 1958, solid-state digital logic modules began replacing electro-mechanical relays. These were the predecessors to modern programmable logic controllers (PLC). In 1959, Texaco's Port Arthur Refinery became the first chemical plant to use digital control, signaling a massive shift toward computer-based industry.

Automation has provided massive increases in productivity across various sectors.

Automated liquid oral dose.jpg
Automated liquid oral dose.jpg
In 1905, the first successful automatic glass bottle-blowing machine was introduced. This machine, run by two people, could produce 17,280 bottles in 24 hours. In contrast, a crew of six men and boys could only make 2,880 bottles in a day using manual methods. The cost also dropped from $1.80 per gross to just 10 to 12 cents per gross. Beyond manufacturing, automation is essential for modern infrastructure. It manages telephone networks, stabilizes ships, and assists in aircraft navigation. While automation has caused job displacement and influenced politics in countries like the US, UK, and France, the World Bank noted in 2019 that new technology sector jobs often outweigh these economic effects.

760 words
🖼️ Images & Media (13)
File:Control room pt tupper.jpg
Control room pt tupper.jpg
File:Clepsydra-Diagram-Fancy.jpeg
Clepsydra-Diagram-Fancy.jpeg
File:Tower bridge steam engine.jpg
Tower bridge steam engine.jpg
File:Catalonia Terrassa mNATEC MaquinaDeVapor ReguladorDeWatt.jpg
Catalonia Terrassa mNATEC MaquinaDeVapor...
File:Automated liquid oral dose.jpg
Automated liquid oral dose.jpg
File:Automated online assistant.png
Automated online assistant.png
File:016 Coca-Cola vending machine at Kyoto Station, Japan - コカコーラ 自動販売機.JPG
016 Coca-Cola vending machine at Kyoto...
File:Factory Automation Robotics Palettizing Bread.jpg
Factory Automation Robotics Palettizing Bread.jpg
Automated side loader operation.webm
File:GammaGIF.gif
GammaGIF.gif
File:Workmaster.jpg
Workmaster.jpg
File:PID en.svg
PID en.svg

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