Wideband-elimination metamaterial and wideband-elimination metamaterial antenna housing and antenna system

A metamaterial and broadband technology, applied in the field of broadband bandstop metamaterial radome and antenna system, can solve the problem of easy exposure of radar, etc., and achieve good wave transmission performance, high wave transmission rate, and small reflection effect

Active Publication Date: 2013-01-02
KUANG CHI CUTTING EDGE TECH LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Although the radome made of these materials can protect the antenna from the influence of the harsh external environment, and the loss of the electromagnetic wave transmitted and / or received by the antenna is small, but since this radome is usually a bandpass radome, it is used When the ship radar system (its operating frequency is generally 3GHz), resonance will occur in certain frequency bands (such as X-band or higher frequencies), and many grating lobes will appear at high frequencies, making certain frequencies and incident angles Radar cross section (English for Radar Cross Section, referred to as RCS) increases, so that the radar non-system is easy to expose

Method used

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  • Wideband-elimination metamaterial and wideband-elimination metamaterial antenna housing and antenna system
  • Wideband-elimination metamaterial and wideband-elimination metamaterial antenna housing and antenna system

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Embodiment Construction

[0024] Terms such as "sheet", "plate" and "layer" in the present invention refer to thin-layer materials of any shape such as plane, curved surface, conical surface, spherical surface, special-shaped surface, etc., and may also include soft films, depending on application requirements. different. For the sake of brevity, the "sheet", "board" and "layer" in this embodiment are all shown in plane.

[0025] Such as figure 1 As shown, the broadband blocking metamaterial of the present invention includes at least one metamaterial sheet 10, and the metamaterial sheet 10 includes a dielectric substrate 12 and two structural layers 14 respectively attached to two opposite surfaces of the dielectric substrate 12. The dielectric substrate 12 is made of polymer material, ceramic material, ferroelectric material, ferrite material or ferromagnetic material, such as epoxy resin glass fiber cloth board (ie FR4 board), polytetrafluoroethylene board (ie F4B board), high-density polyethylene ...

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Abstract

The invention relates to a wideband-elimination metamaterial which comprises a metamaterial slice, the metamaterial slice comprises a media substrate and two structure layers which are attached to two opposite surfaces of the media substrate respectively, each structure layer comprises a plurality of regularly hexagonal metal micro-structures, the two metal micro-structures in the two structure layers, positioned at corresponding positions of the media substrate, form a pair, two adjacent sides of any two adjacent metal micro-structures in each structure layer are parallel to each other, so that the central interval of any two adjacent metal micro-structures is reduced, thus being capable of restraining electromagnetic wave in an ultrawide high frequency range so as to enable the metamaterials to have a wideband-elimination function; and the electromagnetic wave in low frequency range has the advantages of high wave transmittance and small reflection as well as good wave transmitting property. The invention further relates to a wideband-elimination metamaterial antenna housing and an antenna system which are produced by the wideband-elimination metamaterials.

Description

technical field [0001] The present invention relates to metamaterials and metamaterial radome and antenna system made therefrom, more specifically, relates to a novel design broadband bandstop metamaterial and broadband bandstop metamaterial radome and antenna made therefrom system. Background technique [0002] Metamaterials are artificial composite structural materials with extraordinary physical properties that natural materials do not have. Currently, people periodically arrange artificial microstructures with certain geometric shapes on the substrate to form metamaterials. Since the geometric shape, size and arrangement of the artificial microstructure can be used to change the permittivity and / or magnetic permeability of each point in the metamaterial space, so that it can produce the expected electromagnetic response to control the propagation of electromagnetic waves, therefore, in many This field has broad application prospects, and has become one of the hot field...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H01Q15/00H01Q1/42
Inventor 刘若鹏赵治亚方小伟付少丽
Owner KUANG CHI CUTTING EDGE TECH LTD
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