Military combat robot wireless controlled. Camera helps keeping an eye on border.
#1

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Military combat robot wireless controlled. Camera helps keeping an eye on border.
We cannot forget 9/11 when 101 people including nine foreigners and 14 policemen have lost their lives while about 300 people were injured in the worst terror attack seen in the country in which desperate men fired indiscriminately at people. It struck an idea in my mind, why can’t we make a robot to tackle such type of situation.
This combat robot is a basic idea of military robot.
Our Combat robot is radio operated, it has got “Toy Gun” bullet can be fired, radio camera in synchronization with the robot can rotate up and down ,left and right up to a safe firing limit. Gun and camera mechanism has been installed in such manner, which has all the function like tank, Turing to any angle on its axis, moving forward and reverse turning left and right, running instantly into reverse direction. This robot is radio operated; self powered, and has all the controls like a normal car. A laser gun has been installed on it, so that it can fire on enemy remotely when required; this is not possible until a wireless camera is installed. Wireless camera will send real time video and audio signals which could be seen on a remote monitor and action can be taken accordingly. It can silently enter into enemy area and send us all the information through its’ tiny camera eyes. It is designed for, fighting as well as suicide attack.
FEATURES:
 Moves in forward direction.
 moves in reverse direction
 it can even turn left or right while moving forward or in reverse direction
 Instant reverse or forward running without stopping
 On the spot left or right turn to pass through the narrow space.
BLOCK DIAGRAM:
DESCRIPTION:

Power supply block: This consist a 12V power supply source and a power regulator (7805) to get 5v power supply. This 5v supply drives the receiver, lcd
Transmitting unit
Here a variable frequency oscillator 1is used for modulating the frequency i.e. to be transmitted and has its output to a high frequency oscillator 2 for generating a carrier wave. The carrier wave is then radiated into space by the antenna A1.
Receiving Unit
The receiving antenna A2 is connected to a tuned wave detecting circuit 11 for detecting the waves transmitted by antenna A1.The output of the tuned wave detecting circuit 11 for detecting the waves transmitted by the antenna A1.The output of the tuned wave detecting circuit 11 is connected to amplifier 12 which in turn has its output connected to the input of the high pass frequency as well as the filter 13 to a low pass frequency filter 14.The output of the filters 13 is connected to amplifier 15 while the output of filter 14 has its output connected to the input of amplifier 16.The outputs of amplifiers 14 and 16 are connected to separate motors and other side odf motors are connected to voltage potential B3.The high pass frequnecy filter 13 extracts the higher frequency components of the output signals from the amplifier 12 and the low pass frequency filter 14 extracts the lower frequency components of the output signal from the amplifier 12.
KEY COMPONENTS:
Advantages over traditional TAGGING system:

 Modernizes the entire tracking system.
 It is a very user friendly and can even be used by children’s.
 Simple to operate and can be installed in a short time.
 Can be used to track virtually everything.
 No scope for error in detection
 Facilitates quick and accurate detection and tracking is possible instantaneously.
 Re-usable by simply attaching the tag to some other object.
 Easier to manage with very less demand on man-power.
 It has a variable range of operation and hence it can be used at almost all places.

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#2
i want circuit diagram of military combat robot......
plz help me....
email id: manisha.singh2001[at]gmail.com
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#3

to get information about the topic"Military combat robot wireless controlled. Camera helps keeping an eye on border.

http://studentbank.in/report-military-co...3#pid58783
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#4
i want project report on "Design of an intelligent combat robot in war fields"
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#5
pls send project report on "Design of an Intelligent Combat Robot for war fields". pls help me. its emergency
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#6
I want full report like block diagram, methodology and software part of combat robo used in warfield. Please do reply soon. Thank u
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#7

All that is needed is a wireless camera installed in the robot circuit that captures images and videos from enemy territories and transmits these images, which are received by the receiver unit of the TV. Military robots are autonomous robots or remote controlled mobile robots designed for Military, from transport to search and rescue and attack. Some of these systems are currently in use, and many are in development.


History

Widely defined, military robots date from World War II and the Cold War in the form of mines followed by the German Goliath and Soviet teletanks. The drone Predator MQB-1 was when "CIA officers began to see the first practical results of their decades-old fantasy of using airborne robots to gather intelligence."

The use of robots in war, although traditionally a subject for science fiction, is being investigated as a possible future future of fighting wars. Already several military robots have been developed by several armies.

Some believe that the future of modern war will be fought by automated weapons systems. The United States is investing heavily in research and development to test and deploy increasingly automated systems. The most prominent system currently in use is the unmanned aerial vehicle (IAI Pioneer & RQ-1 Predator) that can be armed with air-to-ground missiles and operated remotely from a reconnaissance command center. DARPA has organized contests in 2004 and 2005 to involve private companies and universities to develop unmanned ground vehicles to navigate rugged terrain in the Mojave Desert for a final prize of 2 million.

Artillery has seen promising research with an experimental weapon system called "Dragon Fire II" that automates the loading and ballistics calculations needed for accurate predictable fire, providing a 12-second response time to fire support requests. However, military weapons are prevented from being fully autonomous: they require human input at certain points of intervention to ensure that the objectives are not within areas of restricted fire as defined in the Geneva Conventions for the laws of war.

There have been some developments towards the autonomous development of fighter jets and bombers. The use of autonomous fighters and bombers to destroy enemy targets is especially promising because of the lack of training required for robotic pilots, autonomous planes are capable of performing maneuvers that otherwise could not be done with human pilots (due to the large G-Force quantity), Flat designs do not require a life support system, and a loss of an aircraft does not mean a loss of a pilot. However, the biggest drawback to robotics is its inability to accommodate non-standard conditions. Advances in artificial intelligence in the near future can help rectify this.
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