Polarization torsion active angle reflection direction backtracking system

A technology of direction backtracking and source angle, which is applied in the field of antenna arrays, can solve problems such as high cost, low echo power, and failure to meet application requirements, and achieve the effect of easy implementation and high isolation between transceivers

Active Publication Date: 2020-07-17
NANJING UNIV OF SCI & TECH +1
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

At present, there are mainly three ways to realize direction backtracking: Van Atta array, phase conjugate array (PON array) and corner reflector. Among them, Van Atta array uses space conjugation to realize phase conjugation, and its disadvantage is that the equal-length feed network design It is more complex; the PON array can be traced back to a wide range of angles, but requires a large number of mixers and local oscillator feed networks, and the cost is high; corner reflectors are mostly passive systems, working in a single polarization mode and the echo power Low, unable to meet the application requirements for multi-function, high transceiver isolation, and long-distance transmission in radar, communication, and wireless energy transmission systems

Method used

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  • Polarization torsion active angle reflection direction backtracking system
  • Polarization torsion active angle reflection direction backtracking system
  • Polarization torsion active angle reflection direction backtracking system

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Embodiment

[0026] like figure 1 As shown, a polarization-twisted active angle reflection direction backtracking system includes an active polarization-twisted antenna array 1 on the xoy plane, a first polarization selection surface 2 on the xoz plane, and a second polarization on the yoz plane Select surface 3, the three fronts are orthogonal to each other, and spliced ​​together to form a trihedral reflector structure. The active polarization twisted antenna array 1 is composed of M×N active dual-polarized slot-coupled microstrip antennas 4 arranged periodically, and the first polarization selection surface 2 is selected by P×Q periodically arranged polarizations The second polarization selection surface 3 has the same structure as the first polarization selection surface 2 .

[0027] like figure 2 As shown, the structure of the active dual-polarization slot-coupled microstrip antenna 4 is as follows from top to bottom: radiation patch 5, upper dielectric layer 6, metal floor 7, lowe...

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Abstract

The invention discloses a polarization torsion active angle reflection direction backtracking system. An active polarization torsion antenna array, a first polarization selection surface and a secondpolarization selection surface are orthogonal pairwise and spliced to form a trihedral corner reflector. Direction backtracking and polarization torsion of microwave signals are achieved by means of mirror reflection of the active polarization torsion antenna array and the polarization selection surface so as to improve receiving and transmitting isolation. Besides, the active characteristic of the polarized torsion antenna array is utilized, and power amplification of backtracking signals can be realized according to the requirements of the application environment. The system is suitable forthe fields of radar, microwave power transmission, satellite communication and the like and has the characteristics of high transceiving isolation, controllable echo power and the like and has a simple design process and can be produced in batches by adopting a printed circuit technology.

Description

technical field [0001] The invention belongs to the antenna array technology, in particular to a polarization reverse active angle reflection direction backtracking system. Background technique [0002] The direction-retrospecting array has the characteristic of automatically tracking the direction of incoming waves without complex signal processing equipment, and has great application prospects in the fields of radar, wireless communication, and microwave energy transmission. At present, there are mainly three ways to realize direction backtracking: Van Atta array, phase conjugate array (PON array) and corner reflector. Among them, Van Atta array uses space conjugation to realize phase conjugation, and its disadvantage is that the equal-length feed network design It is more complicated; the PON array can be traced back to a wide range of angles, but requires a large number of mixers and local oscillator feed networks, and the cost is high; corner reflectors are mostly passi...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H01Q15/18
CPCH01Q15/18
Inventor 韩居正董士伟樊振宏陈如山李正军李小军
Owner NANJING UNIV OF SCI & TECH
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