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Axial cascade relativistic magnetron based on frequency locking and phase locking of full-cavity coupling structure

A relativistic magnetron and coupling structure technology, applied in the microwave field, can solve problems such as insufficient coupling degree, and achieve the effects of providing radial compactness, improving pulse shortening, and increasing structural design flexibility

Active Publication Date: 2022-06-24
UNIV OF ELECTRONICS SCI & TECH OF CHINA
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Problems solved by technology

The electromagnetic field in the resonant cavity of the adjacent high-frequency system is coupled through the full-cavity coupling structure, which solves the problem of insufficient coupling between two adjacent high-frequency systems in the axial cascaded relativistic magnetron, and strengthens the effect of cascaded phase-locking

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  • Axial cascade relativistic magnetron based on frequency locking and phase locking of full-cavity coupling structure
  • Axial cascade relativistic magnetron based on frequency locking and phase locking of full-cavity coupling structure
  • Axial cascade relativistic magnetron based on frequency locking and phase locking of full-cavity coupling structure

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Embodiment Construction

[0040] In order to better illustrate the purpose, advantages and technical ideas of the present invention, the present invention will be further described below with reference to specific embodiments. It should be noted that the specific examples given below only serve to explain the present invention in detail, and do not limit the present invention.

[0041] Figure 1 to Figure 5 A schematic structural diagram of the axially cascaded relativistic magnetron of the full cavity coupling structure frequency-locked phase-locked magnetron of the present embodiment includes two axially cascaded high-frequency systems with the same structure.

[0042] The input end of the axially cascaded high-frequency system is provided with a front end surface with a central opening radius of 18mm, and a cylindrical front end space is formed between the front end surface and the adjacent anode blades; The end of the frequency system is provided with a rear end closed surface, and a cylindrical r...

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Abstract

The invention discloses an axial cascade relativistic magnetron based on frequency locking and phase locking of a full-cavity coupling structure, and belongs to the technical field of microwaves. The magnetron comprises a plurality of high-frequency systems which have the same structure and are axially cascaded; an annular columnar isolation structure is arranged between the adjacent high-frequency systems; a full-cavity coupling structure shell is arranged on the outer side of the anode shell; an annular columnar cavity between the full-cavity coupling structure shell and the anode shell is divided into four fan-shaped waveguide cavities with the same size through four fan-shaped insertion pieces; linear transition structures are arranged at two ends of the fan-shaped waveguide cavity, and the other ends of the linear transition structures are connected with the rectangular waveguide; energy in the resonant cavity is coupled to the four fan-shaped waveguide cavities through the coupling gaps and finally output from the eight rectangular waveguides. Electromagnetic fields in the adjacent high-frequency system resonant cavities are coupled through the full-cavity coupling structures, and the cascade phase locking effect is enhanced; and through full-cavity extraction and multi-port axial output, the radial space compactness is improved, and the mode purity and the working stability are also improved.

Description

technical field [0001] The invention belongs to the field of microwave technology, and in particular relates to an axial cascaded relativistic magnetron based on a full-cavity coupling structure frequency-locking and phase-locking. Background technique [0002] From the perspective of practical high-power microwave systems, the development of high-power microwave systems is mainly focused on the following aspects: (1) miniaturization and compactness of the system to improve the power consumption ratio; (2) high repetition frequency operation; (3) frequency Tunable; (4) multi-frequency output; (5) phase-locked array output and power synthesis. Since its inception, relativistic magnetrons have attracted much attention due to their compactness and high efficiency. In order to meet the development and application requirements of high-power microwave sources in the future, the relativistic magnetron with high output power, high conversion efficiency, suitable for long pulse and ...

Claims

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Application Information

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IPC IPC(8): H01J23/36H01J25/50
CPCH01J23/36H01J25/50H01J2223/36H01J2225/50Y02E30/10
Inventor 周豪李天明汪海洋李浩胡标周翼鸿
Owner UNIV OF ELECTRONICS SCI & TECH OF CHINA
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