L-band four-ridge ortho-mode transducer

An orthogonal mode coupler and L-band technology, which is applied in the field of broadband microwave receivers, can solve the problem of the bandwidth expansion of the working frequency band of the orthogonalizer, which cannot be realized, etc.

Inactive Publication Date: 2017-02-15
CHINA ELECTRONICS TECH GRP NO 39 RES INST +1
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Problems solved by technology

[0007] Due to the characteristics of the waveguide mode distribution, even if the first/second high-order mode resonance of the straight channel of the conventional quadrature is eliminated, the working frequency bandwidth of the quadrature cannot be extended to more than twice

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[0036] Example

[0037] The L-band quad-ridge quadrature mode coupler according to the present invention, the working frequency of the quadrature mode coupler is 1-2 GHz, is a modified exponential curve transition ridge diaphragm type orthogonal mode coupler, and is applied to A radio telescope L-band receiver system, the orthogonal mode coupler is composed of a circular waveguide, a four-ridged waveguide gradient transition section, a four-ridged circular waveguide, a ridged diaphragm, a short-circuit back cavity, a first coaxial probe and a second coaxial probe The diameter of the circular waveguide 1 is 293.4mm and the length is 30mm. The length of the gradual transition section 2 of the four-ridged waveguide is 640mm. The diameter of the outer edge of the four-ridged circular waveguide 3 is 136mm, the length is 40mm, the short-circuit back cavity 4 is conical, the diameter of the top surface of the cone is 48mm, the diameter of the bottom surface is 80mm, and the height is...

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Abstract

The invention relates to an L-band four-ridge ortho-mode transducer. The ortho-mode transducer is a modified index gradually-changing curve loaded with ridge diaphragms and a coaxial excitation structure, the operating frequency is 1-2GHz, and the ortho-mode transducer is applied to a radio telescope L-band receiver system. The ortho-mode transducer is composed of a circular waveguide, a four-ridge waveguide gradually-changing transformation segment, a four-ridge circular waveguide, ridge diaphragms, a short-circuit back cavity, a first coaxial probe and a second coaxial probe, and is characterized in that the diameter of the circular waveguide is designed according to the lowest operating frequency; the four-ridge waveguide gradually-changing transformation segment selects a modified index gradually-changing type impedance transformation mode so as to ensure transmission from a dominant mode of the four-ridge circular waveguide dominant mode to a dominant mode of the circular waveguide; chamfer modification is performed on the four-ridge cross section inside the four-ridge circular waveguide so as to ensure that a phenomenon of mutual interference between the ridge diaphragms does not occur; and a four-ridge waveguide coaxial transformer adopts a coaxial feed mode, and the short-circuit back cavity thereof selects a conical design. Measurement and simulation results of the ortho-mode transducer in reflection loss and isolation are basically identical, and radio astronomical observation requirements can be met.

Description

technical field [0001] The invention relates to an L-band quad-ridge orthogonal mode coupler, which is specially used for a broadband microwave receiver in the field of radio astronomy. Background technique [0002] Ortho-Mode Transducer (OMT, Ortho-Mode Transducer), as an important component to realize dual-polarization antenna-feeder system, has been widely used in satellite communication, radio astronomy and military radar. In the field of radio astronomy, the broadening of the OMT operating frequency band is conducive to the realization of full-band coverage of spectrum resources, which can reduce the division of feed types in each frequency band, improve system efficiency, and reduce equipment costs. [0003] An orthogonal mode coupler (referred to as an orthogonalizer or OMT) is a separate or mixed element for two mutually orthogonal polarized waves. OMT can identify independent signals of two orthogonal main modes on a common port (usually a circular waveguide or squ...

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Application Information

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IPC IPC(8): H01P5/16
CPCH01P5/16H01P1/161
Inventor 覃律沈泉马军刘兆明陈卯蒸宁波王凯曹亮刘艳玲李健闫浩
Owner CHINA ELECTRONICS TECH GRP NO 39 RES INST
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