IOT MILITARY SECURITY SYSTEM FOR TRACING OF MISSILE USING ULTRASONIC RADAR

Dr. L. Aravinda Dr. L. Aravinda
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Abstract

The purpose of this project is to design and construct automatic missile detection and destroying system. This system is designed to detect the target (missile) moving in multiple directions. The target destroying system moves automatically in the direction of missile and fires it upon fixing the target. This system consists of an intelligent sonar-based object tracking system that continuously monitors the target. Upon detecting the target, it sends the target‟s location to a Central Control System. The Central Control System takes the action of moving the firing mechanism in the direction of target (missile). Upon fixing the direction, it sends the control command to firing system for attacking the target. In this project we are making use of ultrasonic radar system and a DC geared motor driven firing unit interfaced with a Microcontroller based control unit. The ultrasonic sensor movement is maintained by the servo motor fixed within it. The servo motor is made to revolve through fixed angles; if object is detected then the angle position is sent as the input to the launcher fixed servo motor. The launcher will release the missile fixed within it because the Ultrasonic sensors covers larger sensing distance and it can detect the target in all the lighting conditions (day or night). The programming of Microcontroller is done using Embedded „C‟.
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利用超声波雷达追踪导弹的物联网军事安全系统
该项目的目的是设计和建造导弹自动探测和摧毁系统。该系统可探测多个方向移动的目标(导弹)。目标摧毁系统自动向导弹方向移动,并在锁定目标后发射导弹。该系统由一个基于声纳的智能目标跟踪系统组成,可持续监测目标。探测到目标后,它会将目标位置发送给中央控制系统。中央控制系统采取行动,朝目标(导弹)方向移动发射装置。确定方向后,它将控制指令发送给发射系统,以攻击目标。在本项目中,我们使用了超声波雷达系统和直流减速电机驱动的发射装置,并与基于微控制器的控制单元相连接。超声波传感器的运动由其内部固定的伺服电机来维持。伺服电机通过固定的角度旋转;如果探测到物体,则将角度位置作为输入发送到发射器固定的伺服电机。发射器将释放固定在其内部的导弹,因为超声波传感器的感应距离较大,可以在任何光照条件下(白天或夜晚)探测到目标。微控制器的编程采用嵌入式 "C "语言。
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