Title :
Modeling and design of an infrared-based identification (IRID) system-tag and reader design
Author :
Al-Zu´bi, Muneer M. ; Khodeir, Mahmoud A. ; Al-Mistarihi, Mamoun F.
Author_Institution :
Electr. Eng. Dept., Jordan Univ. of Sci. & Technol., Irbid, Jordan
Abstract :
Infrared based identification system is a promising alternative for radio frequency identification system in order to provide powerful solutions in many situations, i.e., to overcome radio frequency interference. In this work, an infrared-based identification system is modeled and designed. This model consists of a reader and a tag. The reader will perform particular functions in order to communicate with the tag via a wireless media, i.e., infrared channel. These functions include reading a tag identification number and write an identification number into a tag. The reader in the proposed model will display the received data using a liquid crystal display, allows the user to enter data as well as make control using a keypad, and can be connected to a computer to perform more complex functions. On the other hand, the proposed tag is designed to have some merits, i.e., small size, low power consumption, long lifetime, and low cost. Finally, the reader and the tag provide half-duplex communication using infrared transmitter and receiver.
Keywords :
optical communication; radiofrequency identification; telecommunication channels; IRID; half-duplex communication; infrared channel; infrared receiver; infrared transmitter; infrared-based identification system reader design; infrared-based identification system-tag design; liquid crystal display; power consumption; radio frequency identification system; radio frequency interference; wireless media; Batteries; Computers; Light emitting diodes; Microcontrollers; Oscillators; Photodiodes; Radiofrequency identification; Infrared based identification system; Radio frequency identification system; Tag;
Conference_Titel :
Information and Communication Systems (ICICS), 2014 5th International Conference on
Conference_Location :
Irbid
Print_ISBN :
978-1-4799-3022-7
DOI :
10.1109/IACS.2014.6841967