Machines can do jobs by themselves. 
Machines can do jobs by themselves. 
Some machines use parts like water or air. Others use computers to work. 
Long ago, people made water clocks. 
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.
Automation is a way to make machines work with less help from people. 

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. 


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

One common way it works is through a closed-loop control system. 
People have used automatic ideas for a very long time. 

Many big changes happened during the Industrial Revolution. 

Today, automation is part of almost everything we use.
Automation is a broad range of technologies designed to reduce human intervention in various processes. 
A fundamental mechanism in automation is the closed-loop control system.
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. 
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. 

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. 
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