Intelligent Access Control and Monitoring System

2013 ◽  
Vol 437 ◽  
pp. 659-662
Author(s):  
Yi Jun Shen ◽  
Bo Cheng Zhong

Based on the RFID technology, we developed an intelligent building access control and mornitoring system, with which you can effectively control access to the special zone, and monitor the people entering the restricted zone timely and accurately, and helpfully monitor and deal with abnormal situation. Instead of the passive monitoring and alarming in the traditional security system, this system uses the active control. Thus it will provide a more effective way for safety management of enterprises.

The purpose of this study entitled Arduino-based Control and Monitoring System of Household Appliances status using Android Application is to help the people to have control over the house by means of switching on/off and monitor the loads that are plugged into the outlet by the use of cellphones/ tablets. This project provides the simple way to access loads that are left running and forgotten to unplug at home. The structure of the prototype is made up of HardieFlex physical appearance making it fire retardant consisting of 3 sockets available. The 2 outlets are for the normal house sockets while the other one is separated for the Air-condition unit. The circuit breaker is on the upper left side corner dividing the wires of each sockets. The Android Application uses text messages to send information then received by the GSM (Global System for Mobile) and translates it to the Arduino. The Arduino commands the relays to cut and provide electricity for the outlets. This device can notify an individual if there are loads left running, wherein the current sensor able to read the current from the outlet to determine if it has a working load that are plugged into the outlet. The study implements power interruption notification in terms of using the voltage sensor to acquire information of possible power outage occurrences. Based on the results of the evaluation, 95.83% believe that the project was made conveniently, that they are now aware of their surroundings giving them the idea of their house is beyond their reach, and also 95.83% of the respondents are certain that the system is relevant and beneficial to the society.


Author(s):  
Dan Xin

The effective construction of safety monitoring system at construction site depends on perfect management system and advanced technical support. And the lack of information technology platform, resulting in reduced management efficiency, information is not accurate and other issues. Based on the construction site safety monitoring system to achieve the goal, to do a good job in advance prevention, to take the latest information collection technology RFID and BIM integrated comprehensive and effective monitoring of the construction site, constitute the main technology in the monitoring system, thus ensuring the construction site safety monitoring efficiency , Comprehensive, real-time, etc., on the management and technical two points to achieve the construction site safety monitoring, improve the quality of safety management.


2011 ◽  
Vol 179-180 ◽  
pp. 949-954 ◽  
Author(s):  
Xiao Hua Cao ◽  
Juan Wan

Internal material supply management for manufacturing workshops usually suffers from message delay and abnormal logistics events, which seriously holdback the reactivity capability of production system. As a rapid, real-time, accurate information collection tools, Radio Frequency identification (RFID) technology has become an important driver in the production and logistics activities. This paper presents a new idea that uses RFID technology to monitor real-timely the abnormal logistics events which occur at each work space in the internal material supply chain and proposes its construction method in details. With the experimental verification of prototype system, the proposed RFID-based monitoring system can find in time the abnormal logistics events of internal material supply chain and largely improve the circulation velocity of production logistics, and reduce the rate of mistake which frequently occurred in traditional material management based on Kanban.


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