RFID technology revolutionizes product identifications and tracking, crucial in today's data-driven world. Central to its efficiency is the antenna's performance, which bridges communication with RFID readers. This paper introduces a groundbreaking approach to enhance RFID bandwidth through a dual-band monopole antenna. Operating across 2.885 and 6.11 GHz frequencies, it addresses limitations of conventional antennas, fostering broader application of RFID systems. Leveraging advanced design techniques, including geometry optimization and metamaterial integration, the antenna ensures robust communication in dynamic RF environments. Moreover, its reconfigurable elements enable seamless adaptation to evolving RFID needs, bolstered by sophisticated signal processing algorithms for optimized data transmission. This innovative system proclaims significant strides in RFID technology, promising enhanced performance, and versatility in various applications.

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RFID Application Using Dual-Band Monopole Antenna by Enhancing the Bandwidth

  • Meena Perla,
  • Mihir Solanki,
  • Zhil Vora

摘要

RFID technology revolutionizes product identifications and tracking, crucial in today's data-driven world. Central to its efficiency is the antenna's performance, which bridges communication with RFID readers. This paper introduces a groundbreaking approach to enhance RFID bandwidth through a dual-band monopole antenna. Operating across 2.885 and 6.11 GHz frequencies, it addresses limitations of conventional antennas, fostering broader application of RFID systems. Leveraging advanced design techniques, including geometry optimization and metamaterial integration, the antenna ensures robust communication in dynamic RF environments. Moreover, its reconfigurable elements enable seamless adaptation to evolving RFID needs, bolstered by sophisticated signal processing algorithms for optimized data transmission. This innovative system proclaims significant strides in RFID technology, promising enhanced performance, and versatility in various applications.