Automation 173354 225969200 2008-07-16T07:02:17Z User A1 2062655 Reverted edits by [[Special:Contributions/60.241.193.208|60.241.193.208]] ([[User talk:60.241.193.208|talk]]) to last version by User A1 {{Cleanup|date=April 2008}} {{otheruses}} [[Image:Industrial Robotics in car production.jpg|thumb|[[KUKA]] Industrial robots engaged in vehicle underbody assembly]] '''Automation''' ([[ancient Greek]]: = ''self dictated''), '''roboticization'''<ref>http://www.findarticles.com/p/articles/mi_m3MKT/is_v93/ai_3937337</ref> or industrial automation or [[numerical control]] is the use of [[control system]]s such as [[computer]]s to control [[industry|industrial]] [[machinery]] and [[industrial process|process]]es, reducing the need for human intervention.<ref> {{cite web |url=http://dictionary.reference.com/browse/Automation |title=Automation - Definitions from Dictionary.com |publisher=dictionary.reference.com |accessdate=2008-04-22 |last= |first= }} </ref> In the scope of [[industrialization]], automation is a step beyond [[mechanization]]. Whereas ''mechanization'' provided human operators with machinery to assist them with the ''physical'' requirements of work, ''automation'' greatly reduces the need for human ''sensory'' and ''mental'' requirements as well. Processes and systems can also be automated. Automation plays an increasingly important role in the [[global economy]] and in daily experience. Engineers strive to combine automated devices with mathematical and organizational tools to create complex systems for a rapidly expanding range of applications and human activities. Many roles for humans in industrial processes presently lie beyond the scope of automation. Human-level [[pattern recognition]], [[language recognition]], and language production ability are well beyond the capabilities of modern mechanical and computer systems. Tasks requiring subjective assessment or synthesis of complex sensory data, such as scents and sounds, as well as high-level tasks such as strategic planning, currently require human expertise. In many cases, the use of humans is more cost-effective than mechanical approaches even where automation of industrial tasks is possible. Specialised hardened computers, referred to as [[programmable logic controller]]s (PLCs), are frequently used to synchronize the flow of inputs from (physical) [[sensor]]s and events with the flow of outputs to actuators and events. This leads to precisely controlled actions that permit a tight control of almost any [[industrial process]]. [[Human-computer interaction|Human-machine interface]]s (HMI) or [[User (computing)|computer human interfaces]] (CHI), formerly known as ''man-machine interfaces'', are usually employed to communicate with PLCs and other computers, such as entering and monitoring [[temperature control|temperatures]] or pressures for further automated control or emergency response. Service personnel who monitor and control these interfaces are often referred to as stationary engineers.<ref>http://www.bls.gov/oco/ocos228.htm</ref> ==Social impact == Automation has had a notable impact in a wide range of highly visible industries beyond manufacturing. Once-ubiquitous [[telephone operator]]s have been replaced largely by automated [[telephone switchboard]]s and answering machines. Medical processes such as primary screening in [[electrocardiography]] or [[radiography]] and laboratory analysis of human [[genes]], [[blood plasma|sera]], [[cell (biology)|cells]], and [[Biological tissue|tissues]] are carried out at much greater speed and accuracy by automated systems. [[Automated teller machine]]s have reduced the need for bank visits to obtain cash and carry out transactions. In general, automation has been responsible for the shift in the world economy from agrarian to industrial in the 19th century and from industrial to services in the 20th century.<ref>http://www.boston.com/bostonworks/galleries/30fast_declining_occupations?pg=10</ref> The widespread impact of industrial automation raises social issues, among them its impact on [[employment]]. Historical concerns about the effects of automation date back to the beginning of the industrial revolution, when a social movement of English textile [[machine operator]]s in the early 1800s known as the [[Luddites]] protested against Jacquard's automated weaving looms<ref>http://www.spartacus.schoolnet.co.uk/PRluddites.htm</ref> — often by destroying such textile machines— that they felt threatened their jobs. One author made the following case. When automation was first introduced, it caused widespread fear. It was thought that the displacement of human [[operator]]s by computerized systems would lead to severe [[unemployment]]. Critics of automation contend that increased industrial automation causes increased unemployment; this was a pressing concern during the 1980s. One argument claims that this has happened invisibly in recent years, as the fact that many manufacturing jobs left the United States during the early 1990s was offset by a one-time massive increase in [[Information technology|IT]] jobs at the same time. Some authors argue that the opposite has often been true, and that automation has led to ''higher'' employment. Under this point of view, the freeing up of the labour force has allowed more people to enter higher skilled managerial as well as specialised consultant/contractor jobs (like [[cryptographer]]s), which are typically higher paying. One odd side effect of this shift is that "unskilled labour" is in higher demand in many [[first-world]] nations, because fewer people are available to fill such jobs. At first glance, automation might appear to devalue [[labor (economics)|labor]] through its replacement with less-expensive machines; however, the overall effect of this on the workforce as a whole remains unclear. Today automation of the workforce is quite advanced, and continues to advance increasingly more rapidly throughout the world and is encroaching on ever more skilled jobs, yet during the same period the general well-being and quality of life of most people in the world (where political factors have not muddied the picture) have improved dramatically. What role automation has played in these changes has not been well studied. == Current emphases == Currently, for manufacturing companies, the purpose of automation has shifted from increasing productivity and reducing costs, to broader issues, such as increasing quality and flexibility in the manufacturing process. The old focus on using automation simply to increase productivity and reduce costs was seen to be short-sighted, because it is also necessary to provide a skilled workforce who can make repairs and manage the machinery. Moreover, the initial costs of automation were high and often could not be recovered by the time entirely new manufacturing processes replaced the old. (Japan's "robot junkyards" were once world famous in the manufacturing industry.) Automation is now often applied primarily to increase quality in the manufacturing process, where automation can increase quality substantially. For example, automobile and truck [[piston]]s used to be installed into [[internal combustion engine|engines]] manually. This is rapidly being transitioned to automated machine installation, because the error rate for manual installment was around 1-1.5%, but has been reduced to 0.00001% with automation. Hazardous operations, such as [[oil refining]], the manufacturing of [[Chemical industry|industrial chemicals]], and all forms of [[metal working]], were always early contenders for automation. Another major shift in automation is the increased emphasis on flexibility and convertibility in the manufacturing process. Manufacturers are increasingly demanding the ability to easily switch from manufacturing Product A to manufacturing Product B without having to completely rebuild the [[production line]]s. Flexibility and distributed processes have led to the introduction of [[Automated Guided Vehicle]]s with Natural Features Navigation. ==Automation tools== Different types of automation tools exists: * ANN - [[Artificial neural network]] * DCS - [[Distributed Control System]] * HMI - [[Human Machine Interface]] * SCADA - [[Supervisory Control and Data Acquisition]] * PLC - [[Programable Logic Controller]] == See also == {{portalpar|Robotics|Animation2.gif}} {{Commonscat}} {{wikiquote}} <div style="-moz-column-count:3; column-count:3;"> * [[Artificial intelligence]] * [[Controller (control theory)|Controller]] * [[Cybernetics]] * [[Hardware architect]] * [[Hardware architecture]] * [[Industrial Engineering]] * [[Machine to Machine]] * [[OLE for process control]] * [[OPC Foundation]] * [[Process control]] * [[Retraining]] * [[Run Book Automation]] (RBA) * [[Robot]] * [[Systems architect]] * [[Systems architecture]] * [[Odo J. Struger]] </div> ==References== {{reflist}} == Further reading == * [[Jeremy Rifkin]]: The End of Work: The Decline of the Global Labor Force and the Dawn of the Post-Market Era * Ramin Ramtin: ''Capitalism and Automation - Revolution in Technology and Capitalist Breakdown''. Pluto Press, London, Concord Mass. 1991 == External links == * [http://goldberg.berkeley.edu/t-ase/ IEEE Transactions on Automation Science and Engineering] [[Category:Automation| ]] [[ar:اتمتة]] [[cs:Automatizace]] [[da:Automation]] [[de:Automatisierung]] [[el:Αυτοματισμός]] [[es:Ingeniería automática]] [[fa:خودکارسازی]] [[fr:Automation]] [[it:Automazione]] [[he:אוטומציה]] [[nl:Automatisering]] [[ja:ファクトリーオートメーション]] [[no:Automatisering]] [[nn:Automatisering]] [[pl:Automatyzacja]] [[pt:Automação]] [[ru:Автоматизация]] [[sr:Automatizacija]] [[fi:Automaatio]] [[sv:Automatisering]] [[th:ระบบอัตโนมัติ]] [[uk:Автоматизація]] [[zh:自动化技术]]