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Military Robot




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Military robots are autonomous or remote-controlled devices designed for military applications.

Such systems are currently being researched by a number of militaries. Already remarkable success has been achieved with Unmanned Aerial Vehicle s like the Predator Drone , which are capable of taking surveillance photographs, and even accurately launching missiles at ground targets, without a pilot. A subclass of these are Unmanned Combat Air Vehicle s, which are designed to carry out strike missions in combat.


DEVELOPMENTS

, SWORDS.]]
Defense Contractor s in the USA are hard at work developing autonomous "robot soldiers", but most current models look more like Tank s than Human s. There are problems with threat recognition and response; some models will not shoot cows with guerillas crouched behind them, but will fire at anything stenciled with an AK-47 silhouette.

In December 2003 , the Associated Press reported that The Pentagon had purchased several Segway s, as part of a research program called "Mobile Autonomous Robot Software", an attempt to develop more advanced military robots.


EXAMPLES OF SYSTEMS IN DEVELOPMENT

  • US Mechatronics has produced a working automated sentry gun and is currently developing it further for commercial and military use. {Link without Title}

  • MIDARS, a four-wheeled robot outfitted with several cameras, radar, and possibly a firearm, that automatically performs random or preprogrammed patrols around a military base or or other government installation. It alerts a human overseer when it detects movement in unauthorized areas, or other programmed conditions. The operator can then instruct the robot to ignore the event, or take over remote control to deal with an intruder, or to get better camera views of an emergency. The robot would also regularly scan radio frequency identification tags (RFID) placed on stored inventory as it passed and report any missing items.

  • US scientists at MIT are known to be "looking into building a mechanical super-fighter ... able to heal his own wounds, leap buildings, deflect bullets and even become invisible" which "won't be ready for at least 10 years." {Link without Title}

  • Tactical Autonomous Combatant (TAC) units, described in Project Alpha study '''Unmanned Effects: Taking the Human out of the Loop''' - TAC robots are seen as being faster and more lethal than human soldiers, and able to work in more hazardous environments. This study, which was done in 2003, saw TACs as a reality by 2025.

  • ARV

  • ACER

  • ARTS

  • BigDog

  • Dassault Neuron

  • Dragon Runner

  • MATILDA

  • PackBot

  • R-Gator

  • RAAS

  • Syrano



SYSTEMS IN CURRENT USE

SWORDS units equipped with various weaponry.]]


ISSUES

The implications of mastering and using this type of technology are wide, with the possibility of advanced artificial intelligence causing unforeseen consequences (especially if weaponized machines are ever given AI on the level of Sentience ), the possibility of robots being hacked into and used against the owners or the possibility of simple machine breakdown leaving soldiers defenceless if robots are relied on too much.

In literature, a play published in 1921, ' Rossum's Universal Robots ' by Czech writer Karel Capek , tells the story of how people built better and better robots until they finally built robots to fight wars. In the end, the robots decide that fighting is crazy, and take over the world. This idea has since become a common staple of fiction in books, films and television. Its popularity fueled the common (but principally erroneous) belief that machinery is entirely physically superior to biology.

There are many advantages in robotic technology in warfare however, as outlined by Major Kenneth Rose of the US Army's Training and Doctrine Command {Link without Title} : "Machines don't get tired. They don't close their eyes. They don't hide under trees when it rains and they don't talk to their buddies ... A human's attention to detail on guard duty drops dramatically in the first 30 minutes ... Machines know no fear."

Barring hypothetical problems the present difficulties lie mostly in the control mechanism and means of locomotion. Artificial intelligence is presently too limited to provide significant tactical prowess in military situations and limited locomotive technology also degrades this. Present tracked robots could potentially carry more armor and weapons than people except perhaps in certain cases (see Supersoldier , Powered Exoskeleton ) but lack the speed and range of movements that human soldiers have. Human soldiers can improvise and make calls of judgement AI presently can't make, a human commander behind a robot could do the same but at a significantly slower rate which could count for a lot in hostage situations and counter-terrorism scenarios. An AI control machine would most likely simply not be able to defuse such a situation and in the worst-case-scenario might even open fire upon a hostage without hesitation. A potential error in the programming on or off the field could even cause devastating levels of Friendly Fire . This could potentially severely limit the application of military robots. Regarding AI it may become simpler to rely on wireless control though that would be subject to numerous mechanical and electronic faults (see Lag ) or even perhaps Cybernetics .

Tracked robots also face other potential physical problems; humans can vault over obstacles, crouch behind barriers and cover, sneak up on an enemy through thick foliage, climb obstacles and perform dozens of different tasks by hand. Tracked robots can do none of those, the last ability could be mimicked but with only limited results; hands are simply too complex. A single human can also do all of the above while a robot (barring development of human robots, see Android ) would have to be specifically built for it.


FICTION

Military robots are common in fiction of all media.

Film




Television



Literature



Computer games



SEE ALSO




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