Integrated Smart House Security System Using Sensors and RFID

L. Kamelia, M. R. Effendi, D. F. Pratama
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引用次数: 13

Abstract

Efficiency, effectiveness and energy saving had become a research topic that interests the attention of many researchers. The implementation of the security system in the research limited to the automation of door lock and lighting system. The system controlled by Arduino Uno microcontroller centrally. Microcontroller detects the output of Radio Frequency Identification (RFID), Keypad $4\times 4$, Limit Switch, Light Dependent Resistance (LDR) and Passive Infra-Red (PIR) for the security of the door. the microcontroller will give a response when it detects the output from the sensors. A response given by the microcontroller will control the Solenoid, Buzzer, Liquid Crystal Display (LCD) display, and lamp. The door will open if the data/password of RFID and Keypad $4\times 4$ are appropriate. the maximum distance between tag and reader, for data to be read, is 2 cm. The buzzer will turn on when the Limit Switch detects an open door without using RFID and Keypad. The lamp will turn on automatically if conditions are dark and there is human movement in the room. The measurement using PIR sensor to detect the motion and LDR to measure the light condition. The test shows the maximum range of the PIR sensor is 4 meters.
使用传感器和RFID的集成智能家居安全系统
效率、有效性和节能已成为许多研究者关注的研究课题。本研究中安防系统的实现仅限于自动化门锁和照明系统。系统由Arduino Uno单片机集中控制。微控制器检测射频识别(RFID)的输出,键盘$4\ × 4$,限位开关,光相关电阻(LDR)和被动红外(PIR),用于门的安全性。当微控制器检测到传感器的输出时,将给出响应。微控制器给出的响应将控制螺线管、蜂鸣器、液晶显示器(LCD)和灯。如果RFID的数据/密码和键盘$4\ × 4$合适,门就会打开。标签与读取器之间的最大距离为2厘米,以读取数据。当限位开关检测到门打开时,蜂鸣器将打开,而不使用RFID和键盘。如果环境很暗,房间里有人活动,灯就会自动打开。测量采用PIR传感器检测运动,LDR测量光照条件。测试表明PIR传感器的最大探测距离为4米。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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