Title :
Design of Near-Field Edge-Shorted Slot Microstrip Antenna for RFID Handheld Reader Applications
Author :
Liu, Hsien-Wen ; Weng, Chung-Hsun ; Yang, Chang-Fa
Author_Institution :
Dept. of Electr. Eng., Nat. Taiwan Univ. of Sci. & Technol., Taipei, Taiwan
fDate :
7/3/1905 12:00:00 AM
Abstract :
In this letter, a compact edge-shorted slot microstrip antenna with good near-field performance for radio frequency identification (RFID) applications is proposed. It is composed of a rectangular slot radiator, a shorting wall, and a pair of shorting strips, which occupy a small size of 40 (L)×16 (W)×6 (H) mm3 to be easily embedded inside a handheld reader device as an internal antenna. By properly designing a thin slot and a shorting wall, strong and uniform electric field distribution surrounding the near-zone region can be obtained with the antenna. This design can not only achieve an operating band of 2.38-2.55 GHz, but also generate large capacitive coupling effect to significantly enhance the near-field performance for actual application. Experiments exhibit that the proposed patch antenna may well function as a handheld reader antenna to detect the dipole-like tags through capacitive coupling for RFID near-field operation.
Keywords :
microstrip antennas; radiofrequency identification; slot antennas; RFID handheld reader application; capacitive coupling; dipole-like tag; electric field distribution; frequency 2.38 GHz to 2.55 GHz; handheld reader antenna; internal antenna; near-field edge-shorted slot microstrip antenna; patch antenna; radio frequency identification application; rectangular slot radiator; thin slot design; Antenna measurements; Dipole antennas; Electric fields; Microstrip antennas; Radiofrequency identification; Slot antennas; Handheld reader; microstrip antenna; near-field; radio frequency identification (RFID);
Journal_Title :
Antennas and Wireless Propagation Letters, IEEE
DOI :
10.1109/LAWP.2011.2171310