new slide jshdvshsbnsksbsbsjsj1_091409.pptx

baua626 13 views 20 slides Sep 26, 2024
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About This Presentation

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Slide Content

Introduction In This Idea We show many time our Indian Army put up ( Press ) his mines boom and mines boom blast , This is very big point and problem so I innovate a design of mines system and innovate a device that device we add in Indian army soldier cloth , shoes and when Indian Army Soldier come to mines that device generate a signal for mines so mines automatic off and when he press mines my his leg but mines can not blast so Our Indian Army Soldier save this is best idea for our Indian army and when any Terrorist come to Indian border and press this mines and think it is not working because many Indian army cross and press but when terrorist put up the leg on mines and mines press then mines blast , and if our Indian army soldier press the mines that time mines not blast , so my this innovative idea for my country .

Literature review [1] Masahiko Nishimoto, Yusuke Kimura, Takaaki Tanaka, and Koichi Ogata ,“UWB-GPR Data Processing for Identification of Anti-Personnel Landmines under Rough Ground Surface”, Ultra-Wideband, ICUWB, IEEE International conference[sept 2007]. [2] Bharath J, Automatic Land Mine Detection Robot Using Microcontroller , In this paper we can see total 70 countries faced problem because of landmines. So by designing the robot prototype which is capable of detecting buried landmines and changing their locations, while enabling the operator to control the robot wirelessly from a distance we can remove the problems of landmine. in this technology the metal detector circuit is used in a robot to search the landmines to detect the metallic components used in landmines. The metal detector circuit is interfaced with the robot and it is left on the required search area. In this project the cost of making robot is very low and it is more efficient. And this is the main advantage of this project[JAN 2015].

[3] Seong Pal Kang, Junho Choi, Seung-Beum Suh, Sungchul Kang, Design of mine detection robot for Korean mine field , in this paper we can see the critical design constraints of mine detection robots for Korean minefield. The environment of Korean minefield was investigated because of demining robot development project, and as per the requirements for suitable robot design were determined. Lots of landmines were buried close to the demilitarized zone (DMZ) in Korean minefield more than half of a century ago. since the Korea War areas have not been urbanized, and the vegetation covered all the potential locations of the explosives by military tactics. because of this at the initial stage of the demining robot system development, the target areas were investigated and the suitable design for Korean minefield terrain was determined. in this design it is includes a track type main platform with a simple moving arm and a mine detection sensor (which consists of a metal detector and a GPR at this stage), distance sensing technique for terrain adaptability was developed to maintain the effective distance between the landmine sensors and ground surface and briefly Introduced in this paper. By considering the speed, the overall design of this robot was determined[OCT 2017].

OBJECTIVE The primary objective of this project is to provide a solution that can help minimize the risks associated with landmines. With the help of RFID technology, the system can distinguish between authorized personnel and unauthorized individuals. The landmine will only be triggered when someone without the RFID-equipped shoes steps on it. The project can be utilized in various settings such as military operations, construction sites, and other areas where the presence of landmines is a concern. It can significantly reduce the risk of accidental explosions and protect human life. Overall, this project demonstrates how innovative solutions can be developed to address complex problems. By utilizing cutting-edge technologies, we can create systems that are not only effective but also safe for the people who use them. The project is a prime example of how technology can be used to save lives, protect us from terrorists and make the world a better place.

Hardware Specifications :- Main Components Working Name

Transmitter And receiver The transmitter sends a control signal to the receiver using radio waves and when receiver receive the signal then he give the command to output .

. What is a 5V Relay? A 5v relay is an automatic  switch  that is commonly used in an automatic control circuit and to control a high-current using a low-current signal. The input voltage of the relay signal ranges from 0 to 5V.

. A voltage applied across the conductors creates an electrical field in the capacitor, which stores energy. A capacitor operates like a battery in that, if  a potential difference is applied across it that can cause a charge greater than its "present" charge, it will be charged up Electrolytic Capacitor

LED Bulb 3V DC LED Bulb We use for showing electricity generating for.

Resistor A resistor is a passive two-terminal electrical component that implements electrical resistance as a circuit element. In electronic circuits, resistors are used to reduce current flow, adjust signal levels, to divide voltages, bias active elements, and terminate transmission lines, among other uses.

Circuit Diagram

Silent Mines System Circuit Diagram

Army Camp Alarm System Circuit Diagram

Circuit Details 2CH radio transmitter and receiver kit designed for handmade RC vehicles projects On-board 2 momentary button to control the motor movement direction Working Voltage: DC 3-4.5V Communication Distance: 10meter/33ft Electronic Frequency : 27 MHz Relay Voltage : 5v Capacitor : 25v/1000uf

How it Work? In This Project we use two device First is in shoes that is transmitter when shoes near to mains system that device active and generate signal . Second system is receiver system we use receiver system under in mains system and receiver connect to relay and relay connect to pressure switch and pressure switch connect to fire box so when army shoes come to mains system then mains received the signal then receiver turn off the relay and relay turn off the pressure switch and then pressure switch no have electric power so when he press but electric power can not go to fire box so fire box not blast , and when Terrorist press the mains that time relay on so pressure switch have electric power so pressure switch press and electric power go to fire box and fire box blast , So This is full working of this advance mins system .

Advantages And Limitations of the system Advantage We can save our Soldier live . This system increase our power . This is Live working Project Idea for our Indian army soldier . Limitations of the system We can use this system only army board or only army area this idea . we will not use in publicly area .

Application The project successfully address the safety concerns faced by the military. By utilizing an ESP32 module in the landmine and an RFID tag in the shoe, the system ensures that the landmine remains inactive when soldiers wearing the proper shoes step on it, preventing any accidental detonations. However, the system is designed to detect shoes without the RFID tag, triggering the landmine when a potential threat, such as a terrorist, steps on it. This innovative approach enhances the security of the military forces by effectively differentiating between authorized personnel and potential adversaries. This project offers a significant advancement in landmine safety technology, reducing the risk of unintended harm to friendly forces while maintaining the ability to neutralize threats. It exemplifies the successful integration of sensor technology and RFID tagging for enhanced military protection and underscores the importance of innovation in safeguarding our armed forces.

Refrences [1] Maki K. Habib, “Mine Detection and Sensing Technologies-New Development Potentials in the Context of Humanitarian Demining”. Industrial Electronics Society, 2001, IECON’01, The 27th Annual Conference of the IEEE, Vol 3, pp 1612 – 1621, Nov. 29 2001-Dec. 2 2001. [2] Dae Man Kim, Seok Hwan Kim, Seokjae Lee, and Kangwook Kim, “Combined Metal Detector and GPR sensor Experiments in a variety of soil conditions” Geoscience and Remote Sensing Symposium, IEEE International, Vol 4, pp IV-601 - IV-604, 12-17 July 2009. [3] Frank Cremer, Wim de Jong and Klamer Schutte, “Processing of polarimetric infrared images for landmine detection”, 2ND International Workshop on Advanced Ground Penetrating Radar, Delft, The Netherlands, pp 216 - 221, May 2003.

[4] Masahiko Nishimoto, Yusuke Kimura, Takaaki Tanaka, and Koichi Ogata, “UWB-GPR Data Processing for Identification of Anti-Personnel Landmines under Rough Ground Surface”, Ultra-Wideband, ICUWB, IEEE International conference, pp 37-42, Sept 2007. [5] Ning Xiang and James M. Sabatier, “Laser Doppler Vibrometer-Based Acoustic Landmine Detection Using the Fast M-Sequence Transform”, IEEE Geoscience and remote sensing letters, Vol.1, no.4, October 2004. [6] Alan Jacobs and Edward Dugan, “X-ray Backscatter (PAPER II)”. May 2007 [7] Zakarya Zyada and Toshio Fukuda, “3D Template Based Automatic Landmine Detection from GPR Data”, SICE Annual Conference 20, Kagawa University, Japan Sept 2007 [8]GPS 18 Technical Specifications- GARMIN. Website: www.garmin.com manuals/425_TechnicalSpecification.pdf As of Date: 10th April,2012 [9] GPS NMEA Sentence information. Website: http://aprs.gids.nl/nmea/ As of Date: 10th April,2012. [10] ARDUNIO CONTROLLED LANDMINE DETECTION ROBOT V. Abilas and J. Paul Chandra Kumar Department of Mechatronics Engineering, Jeppiaar Engineering College, Chennai . March 2017
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