Land Walker
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Land Walker
The Land Walker is the first bipedal robot. Despite its name, it does not actually walk— instead shuffling on wheels hidden under its "feet" at approximately . It was invented by Masaaki Nagumo and created by researchers who hope to someday create similar robots to be used in the military and law enforcement. Design The Land Walker stands at about tall, weighing about . It "walks", or shuffles, at a speed of around . It has a cockpit, similar to a small airplane, big enough to seat one human. Two cannons are mounted on the arms of the robot, which fire rubber or plastic balls. Enryu The Land Walker is very similar to the biped robot Enryu, which was also created by the Sakakibara Kikai Co. in Tmsuk, Japan. The Enryu stands at a height of . It shuffles faster than the Land Walker because it uses caterpillar-like tracks instead of legs. It was built to help in emergency situations, like rushing into a burning building, lifting heavy objects, and rescuing people. Its arms act ...
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Bipedal
Bipedalism is a form of terrestrial locomotion where an organism moves by means of its two rear limbs or legs. An animal or machine that usually moves in a bipedal manner is known as a biped , meaning 'two feet' (from Latin ''bis'' 'double' and ''pes'' 'foot'). Types of bipedal movement include walking, running, and hopping. Several groups of modern species are habitual bipeds whose normal method of locomotion is two-legged. In the Triassic period some groups of archosaurs (a group that includes crocodiles and dinosaurs) developed bipedalism; among the dinosaurs, all the early forms and many later groups were habitual or exclusive bipeds; the birds are members of a clade of exclusively bipedal dinosaurs, the theropods. Within mammals, habitual bipedalism has evolved multiple times, with the macropods, kangaroo rats and mice, springhare, hopping mice, pangolins and hominin apes ( australopithecines, including humans) as well as various other extinct groups evolving the ...
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Cockpit
A cockpit or flight deck is the area, usually near the front of an aircraft or spacecraft, from which a Pilot in command, pilot controls the aircraft. The cockpit of an aircraft contains flight instruments on an instrument panel, and the controls that enable the pilot to fly the aircraft. In most airliners, a door separates the cockpit from the aircraft cabin. After the September 11 attacks, September 11, 2001 attacks, all major airlines Airport_security_repercussions_due_to_the_September_11_attacks#Improved_security_on_aircraft, fortified their cockpits against access by aircraft hijacking, hijackers. Etymology The word cockpit seems to have been cockpit (sailing), used as a nautical term in the 17th century, without reference to cock fighting. It referred to an area in the rear of a ship where the cockswain's station was located, the cockswain being the pilot of a smaller "boat" that could be dispatched from the ship to board another ship or to bring people ashore. The ...
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Enryu
The T-52 Enryu is a rescue robot. A rescue robot is a robot that is made to help the humans in areas that have been hit by a natural disaster such as an earthquake, tsunami, etc., or by a man-made disaster such as fires, car crashes, etc. There are many different types of rescue robots of different sizes and shapes. The , sometimes referred to as "HyperRescueRobot", is a hydraulically operated robot, built to cut a path through debris for rescue workers, in the wake of an earthquake or other catastrophe. As of 2006, the robot conducted a performance test at Nagaoka University of Technology and successfully lifted a car from a snowbank. TMSUK developed the robot in cooperation with Kyoto University, the Kitakyushu Fire Department and Japan's National Research Institute of Fire and Disaster in Tokyo. The 3.5-metre-tall robot can either be driven from a cockpit A cockpit or flight deck is the area, usually near the front of an aircraft or spacecraft, from which a Pilot in comman ...
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Mecha
In science fiction, or mechs are giant robots or machines controlled by people, typically depicted as humanoid walking vehicles. The term was first used in Japanese (language), Japanese after shortening the English loanword or , but the meaning in Japanese is more inclusive, and or 'giant robot' is the narrower term. Fictional mecha vary greatly in size and shape, but are distinguished from vehicles by their humanoid or Biorobotics, biomorphic appearance, although they are bigger, often much bigger, than human beings. Different Genre#Subgenre, subgenres exist, with varying connotations of realism. The concept of Super Robot and Real Robot are two such examples found in Japanese anime and manga. Real-world piloted humanoid or non-humanoid Robot locomotion, robotic platforms, existing or planned, may also be called "mecha". In Japanese, "mecha" may refer to mobile machinery or vehicles (including aircraft) in general, manned or Mobile robot, otherwise. Characteristics 'Mec ...
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Remote Weapon System
A remote controlled weapon station (RCWS), or remote weapon station (RWS), also known as a remote weapon system (RWS), is a remotely operated weaponized system often equipped with fire-control system for light and medium-caliber weapons which can be installed on a ground combat vehicle or sea- and air-based combat platforms. Such equipment is used on modern military vehicles, as it allows a gunner to remain in the relative protection of the vehicle. It may also be retrofitted onto existing vehicles; for example, the Crows system is being fitted to American Humvees. Examples * ** Electro Optic Systems * ** FN Herstal: deFNder Family * ** REMAX * ** Rheinmetall Canada: Fieldranger * ** UW4A ** CS/LK4 ** H/PJ17 * **Hornet **Hornet Lite **Hornet S * ** Patria: PML 127 OWS * : ** DRWS-1 ** DRWS-2 ** RWS-23 * : ** FLW 100, FLW 200 and FLW 200+ * : ** BEL RCWS ** MDSL RWS ** SHARANG RWS * ** ARIO-H762 ** Raad - 30mm remote control turret * : **Typhoon Weapon System **Sams ...
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Rolling Robots
Robot locomotion is the collective name for the various methods that robots use to transport themselves from place to place. Wheeled robots are typically quite energy efficient and simple to control. However, other forms of locomotion may be more appropriate for a number of reasons, for example traversing rough terrain, as well as moving and interacting in human environments. Furthermore, studying bipedal and insect-like robots may beneficially impact on biomechanics. A major goal in this field is in developing capabilities for robots to autonomously decide how, when, and where to move. However, coordinating numerous robot joints for even simple matters, like negotiating stairs, is difficult. Autonomous robot locomotion is a major technological obstacle for many areas of robotics, such as humanoids (like Honda's Asimo). Types of locomotion Walking * ''See'' Passive dynamics * ''See'' Zero Moment Point * ''See'' Leg mechanism * ''See'' Hexapod (robotics) Walking robots ...
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Robots Of Japan
"\n\n\n\n\nThe robots exclusion standard, also known as the robots exclusion protocol or simply robots.txt, is a standard used by websites to indicate to visiting web crawlers and other web robots which portions of the site they are allowed to visit.\n\nThis relies on voluntary compliance. Not all robots comply with the standard; email harvesters, spambots, malware and robots that scan for security vulnerabilities may even start with the portions of the website where they have been told to stay out.\n\nThe \"robots.txt\" file can be used in conjunction with sitemaps, another robot inclusion standard for websites.\n History\nThe standard was proposed by Martijn Koster, when working for Nexor in February 1994\n on the ''www-talk'' mailing list, the main communication channel for WWW-related activities at the time. Charles Stross claims to have provoked Koster to suggest robots.txt, after he wrote a badly-behaved web crawler that inadvertently caused a denial-of-service attack on Kos ...
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