planar near-field rfid reader antenna for item-level tagging Planar Near-Field RFID Reader Antenna for Item-Level Tagging
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In this letter, we propose a novel UHF planar near-field antenna for the application of RFID item-level tagging. The proposed antenna was designed to have a strong and uniform . In this letter, we propose a novel UHF planar near-field antenna for the application of RFID item-level tag- ging. The proposed antenna was designed to have a strong and . In this letter, we propose a novel UHF planar near-field antenna for the application of RFID item-level tagging. The proposed antenna was designed to have a strong and uniform H z -field over a broad antenna aperture to identify the various items with stable reading performance.
In this letter, we propose a novel UHF planar near-field antenna for the application of RFID item-level tag- ging. The proposed antenna was designed to have a strong and uniform -field.
Planar Near-Field RFID Reader Antenna for Item-Level Tagging. Chihyun Cho, Chuyong Lee, Jeongki Ryoo, and Hosung Choo, Senior Member, IEEE. Abstract—In this letter, we propose a novel UHF planar near-field antenna for the application of RFID item-level tag-ging.Planar Near-Field RFID Reader Antenna for Item-Level TaggingFor the so-called smart shelf antenna applications, item RFID tags are typically placed on the reader antenna surface and may occupy various interrogation volumes within the reactive and radiative near-field zones.
In this paper we presented a novel planar RFID reader antenna for near-field UHF communications. The proposed antenna achieves a strong and uniformly distributed near magnetic field using the concept of opposite-directed currents.
In the design of ultra-high-frequency (UHF) radio frequency identification (RFID) near-field antennas, realising an antenna with electrically large size, wide frequency band, and far read range has. A UHF band near-field antenna using microstrip lines and stubs for tagging stacked tags in a smart table is presented. It is shown that a suitable near-field reader antenna can be designed from signal lines, ground lines, and several stubs to generate coupled electric and magnetic fields.A near-field switched loop antenna array with a circular defected ground structure for precise positioning systems is presented. By switching the loop array, the positions of the densely placed small-sized radio frequency identification tags can be identified.
In this letter, we propose a novel UHF planar near-field antenna for the application of RFID item-level tagging. The proposed antenna was designed to have a strong and uniform \mbiHz -field over a broad antenna aperture to identify the various items with stable reading performance. In this letter, we propose a novel UHF planar near-field antenna for the application of RFID item-level tagging. The proposed antenna was designed to have a strong and uniform H z -field over a broad antenna aperture to identify the various items with stable reading performance.
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In this letter, we propose a novel UHF planar near-field antenna for the application of RFID item-level tag- ging. The proposed antenna was designed to have a strong and uniform -field.
Planar Near-Field RFID Reader Antenna for Item-Level Tagging. Chihyun Cho, Chuyong Lee, Jeongki Ryoo, and Hosung Choo, Senior Member, IEEE. Abstract—In this letter, we propose a novel UHF planar near-field antenna for the application of RFID item-level tag-ging.Planar Near-Field RFID Reader Antenna for Item-Level TaggingFor the so-called smart shelf antenna applications, item RFID tags are typically placed on the reader antenna surface and may occupy various interrogation volumes within the reactive and radiative near-field zones.In this paper we presented a novel planar RFID reader antenna for near-field UHF communications. The proposed antenna achieves a strong and uniformly distributed near magnetic field using the concept of opposite-directed currents.
In the design of ultra-high-frequency (UHF) radio frequency identification (RFID) near-field antennas, realising an antenna with electrically large size, wide frequency band, and far read range has. A UHF band near-field antenna using microstrip lines and stubs for tagging stacked tags in a smart table is presented. It is shown that a suitable near-field reader antenna can be designed from signal lines, ground lines, and several stubs to generate coupled electric and magnetic fields.
A near-field switched loop antenna array with a circular defected ground structure for precise positioning systems is presented. By switching the loop array, the positions of the densely placed small-sized radio frequency identification tags can be identified.
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