A Planar High Gain Microstrip Reflectarray Antenna

A reflection array antenna and high gain technology, applied in the field of transmitting array antennas, can solve the problems of small phase adjustment range of reflection units, difficult design and processing, and low adjustment flexibility, and achieves easy to find processing units, light weight, and processing difficulty. small effect

Active Publication Date: 2017-06-23
天元瑞信通信技术股份有限公司
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  • Claims
  • Application Information

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Problems solved by technology

[0003] This patent aims to solve the problem of cross-polarization of the feed source, as well as the difficulty of design and processing, the gain is not high enough, the phase adjustment range of the reflection unit is small, and the adjustment flexibility is small.

Method used

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  • A Planar High Gain Microstrip Reflectarray Antenna
  • A Planar High Gain Microstrip Reflectarray Antenna
  • A Planar High Gain Microstrip Reflectarray Antenna

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Embodiment Construction

[0023] The present invention will be further described below in conjunction with the accompanying drawings and embodiments.

[0024] The present invention designs two folded planar microstrip reflective array antennas whose scanning angles are 0 degree and 45 degree respectively.

[0025] Such as figure 1 As shown, the feed source adopts a 2×2 microstrip patch array, and the array element is a microstrip patch with a length of 12.9mm and a width of 8.7mm. A one-to-four power splitter can be used, but the performance is not as good as two-stage one-two The power divider is good, but the design is relatively troublesome, but the one-point two-power divider is easy to realize, convenient to process, and the performance is good, which meets the requirements, so this feed uses a two-stage one-point two power divider for feeding.

[0026] figure 1 The dimensions in the following table:

[0027] z1 z2 z3 z4 z5 15.5mm 2.5mm 8.75mm 11.45mm 12.45mm

[0...

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Abstract

The invention provides a planar high-gain microstrip reflectarray antenna, which includes a feed source, a polarization grid and a reflection surface. The feed source is composed of a 2×2 microstrip patch array, and the polarization grid adopts printed dipoles Array, the reflective surface adopts the design of the array unit, the reflective surface is composed of 96 reflective units, the microstrip metal patch layer of each reflective unit is a square microstrip patch, and the polarization grid and the reflective surface are connected by the bracket of the metal column The link is fixed, so that the polarization direction of the printed dipole in the polarization grid is consistent with the polarization direction of the feed source, and a folded reflectarray antenna is formed. The antenna of the present invention has simple structure and feeding, high gain, and low profile It has the characteristics of high polarization purity, and the processing difficulty is small, the production cost is low, and it is easy to find processing units.

Description

technical field [0001] The invention relates to an antenna, especially a transmitting array antenna. Background technique [0002] For a long time, the fields of satellite communication, radar detection, deep space exploration and radio astronomy research require high-gain, low-profile miniaturized antennas to achieve long-distance wireless communication, and reflectarray antennas play an important role. The reflectarray antenna has the characteristics of miniaturization and high gain. The reflectarray antenna is mainly composed of a polarized grid, a feed source and a reflective surface. The incident wave of the reflectarray antenna is provided by the feed source, and the electromagnetic wave is reflected to the reflective surface through the polarized grid. , the electromagnetic wave is reflected twice by the reflective surface to form an electromagnetic beam in space. The general technology uses a rectangular or conical horn antenna as a feed source, but the cross-polari...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): H01Q1/50H01Q15/14H01Q15/24H01Q19/10H01Q21/00
Inventor 韦高佟进款韩旭
Owner 天元瑞信通信技术股份有限公司
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