Broadband radar radio frequency digital receiver based on microwave photons and signal acquisition and processing method

A digital receiver, broadband radar technology, applied in the field of radar

Active Publication Date: 2018-11-20
CHINA ELECTRONICS TECH GRP CORP NO 14 RES INST
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  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

However, in the currently disclosed technology, there is no method that can satisfy the above conditions at the same time

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  • Broadband radar radio frequency digital receiver based on microwave photons and signal acquisition and processing method
  • Broadband radar radio frequency digital receiver based on microwave photons and signal acquisition and processing method
  • Broadband radar radio frequency digital receiver based on microwave photons and signal acquisition and processing method

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Embodiment

[0145] Such as figure 1 Shown is a composition block diagram of an embodiment of the wideband radar radio frequency digital receiver of the present invention. This embodiment includes two waveforms: 10GHz-15GHz random noise coded waveform and 18GHz-24GHz chirp waveform. Due to the wide frequency band selected, the form of pulse division in the embodiment is 1 to 4, and the optical pulse repetition frequency generated by the mode-locked laser is 10MHz, which determines the system sampling rate to be 10MHz, which is much lower than Nyquist sampling The sampling rate required by the theorem. The broadband radar radio frequency digital receiver shown in the embodiment specifically includes the following parts:

[0146] 1) RF link: The echo signal is received by the antenna, and after being limited by the limiter, it is amplified by the RF amplifier, and the corresponding band-pass filter is selected according to the frequency band of the radar waveform. According to the selecte...

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Abstract

The invention provides a broadband radar radio frequency digital receiver based on microwave photons and a signal acquisition and processing method. A mode-locked laser is used as an ultrashort pulselaser light source to generate optical pulses, and a tunable optical filter is utilized to divide frequency spectrum components of the optical pulses into a plurality of sub-bands so as to generate asub-pulse sequence; each sampling optical pulse group completes one-time sampling; a sampled optical pulse sequence is input to an electro-optical modulator and modulated by a radio frequency signal received by an antenna, so that the amplitude of the radio frequency signal is mapped to the intensity of the optical pulse; an optical signal after pulse width expansion is allocated to a signal conversion module through a wavelength division multiplexing module to be converted into a discrete time digital signal; and an information processing module reconstructs a complex signal according to thediscrete time digital signal and builds a one-dimensional image of a target. The broadband radar radio frequency digital receiver based on microwave photons does not require a frequency mixing link; and while ensuring the theoretical resolution of a broadband radar signal, a radar system is allowed to adopt more complicated waveforms, and can perform sampling at a sampling rate lower than a Nyquist sampling rate.

Description

technical field [0001] The invention belongs to the technical field of radar, and in particular relates to a microwave photon-based broadband radar radio frequency digital receiver and a signal collection and processing method. Background technique [0002] When the radar realizes the high-resolution detection function, it needs to adopt the broadband signal. For broadband signals, how to receive and reconstruct the signal is a big problem. The first challenge is the analog response of the receiver to large-bandwidth signals: to achieve centimeter-level resolution, even if the radar signal is modulated into a zero-IF signal through a frequency mixing link, its bandwidth is above GHz, which is difficult for traditional receivers to deal with Its effective response; followed by the requirements of the Nyquist sampling theorem, that is, the sampling rate must be at least twice the signal bandwidth to reconstruct the signal and process it. For large-bandwidth radar signals, thi...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G01S7/285G01S7/292
CPCG01S7/285G01S7/292
Inventor 王梓谦潘时龙叶星炜
Owner CHINA ELECTRONICS TECH GRP CORP NO 14 RES INST
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