Wide axial ratio bandwidth dual-frequency dual-circular-polarization microstrip array antenna

A technology of axial ratio bandwidth and dual circular polarization, which is applied to antenna unit combinations with different polarization directions, independent antenna unit combinations, and radiation element structure forms, etc., can solve the problem of dual-frequency circular polarization antennas with narrow axial ratio bandwidth , Limiting the working bandwidth of the antenna, etc., to achieve the effect of simple structure and increasing the dual-frequency axial ratio bandwidth

Active Publication Date: 2016-10-05
NANJING UNIV OF SCI & TECH
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  • Abstract
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  • Claims
  • Application Information

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Problems solved by technology

However, although there are many studies on this antenna, they all have a common shortcoming, that is, the dual-frequency circular polarization axis ratio of the antenna is too narrow.
For microstrip antennas, the circular polarization axial ratio bandwidth is often smaller than the antenna's standing wave ratio bandwidth, so a narrower axial ratio bandwidth will severely limit the antenna's operating bandwidth

Method used

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  • Wide axial ratio bandwidth dual-frequency dual-circular-polarization microstrip array antenna
  • Wide axial ratio bandwidth dual-frequency dual-circular-polarization microstrip array antenna
  • Wide axial ratio bandwidth dual-frequency dual-circular-polarization microstrip array antenna

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Embodiment

[0026] In the example design we made, the array size we selected is 2×2 units, and the working frequency f 1 and f 2 12.1GHz and 17.5GHz respectively. The operating frequency is f 1 The circularly polarized radiating patch 2 and the operating frequency f 2 The circularly polarized radiation patches 3 are all single-feed circularly polarized microstrip patches, and the working frequency is f 1 The polarization state of the circularly polarized radiation patch 2 is right-handed circularly polarized, and the working frequency is f 2 The polarization state of the circularly polarized radiation patch 3 is left-handed circular polarization. combine figure 1 , the working frequency in the first group, the second group, the third group and the fourth group is f 1 The relative phases of the circularly polarized radiation patch 2 are 180°, 90°, 0°, and 270° respectively, and the phase arrangement makes the array composed of these four patches realize right-handed circular polariza...

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Abstract

The invention discloses a wide-axis-ratio-bandwidth dual-frequency dual-circularly polarized microstrip array antenna. The device includes a single-layer microwave dielectric substrate, four operating frequencies f 1 Circularly polarized radiation patch, 4 operating frequencies f 2 Circularly polarized radiation patch, and a dual-frequency shared microstrip power division network; wherein, the operating frequency is f 1 , f 2 Circularly polarized radiation patches are evenly distributed on the circle centered on point O, and the working frequency is f 1 , f 2 Circularly polarized radiation patch interval distribution; the dual-frequency shared microstrip power division network includes 2 Wilkinson power dividers, 1 T-shaped power divider, and 2 operating frequencies composed of microstrip lines for f 1 90° phase shifter, 2 operating frequencies f 2 90° phase shifter and a dual-frequency shared 180° phase shifter; the invention effectively increases the dual-frequency circular polarization axial ratio bandwidth, and can be easily extended to a high The gain array has simple structure, low profile and easy realization.

Description

technical field [0001] The invention belongs to the technical field of antennas, in particular to a wide-axis-ratio-bandwidth dual-frequency dual-circularly polarized microstrip array antenna. Background technique [0002] With the advancement of technology and the increasingly complex electromagnetic environment, the current radar and communication systems undertake more and more functions, and multi-functional integration has become an important development trend. However, for wireless systems such as radar and mobile communications, each function requires a separate antenna. This not only makes the antenna bulky, but also compresses the available space of other hardware in the system, which is not conducive to the miniaturization and integration of the system. In this context, the multi-frequency, multi-polarization common-aperture design of antennas has become an important research direction in the field of antennas, among which dual-frequency dual-polarization antennas...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H01Q1/38H01Q21/24H01Q21/30
Inventor 张金栋吴文方大纲陈峤羽韩思琪任禛张铎崔璨冯敏
Owner NANJING UNIV OF SCI & TECH
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