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SAR real time self-focusing method based on phase error direct estimate

A phase error and self-focusing technology, which is applied to the reflection/re-radiation of radio waves, the use of re-radiation, measurement devices, etc., can solve the problem of low estimation accuracy, improve the focus quality, reduce the amount of computation, and reduce iterations The effect of times

Active Publication Date: 2015-02-04
南京华睿智光信息科技研究院有限公司
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Problems solved by technology

[0004] The technical problem to be solved by the present invention is to aim at the deficiency of the above-mentioned background technology, provide a SAR real-time self-focusing method based on the direct estimation of the phase error, adopt the processing structure of the PGA algorithm, and estimate the fixed phase between each distance unit based on the SAR image signal model The difference value, combined with the estimation operator that directly estimates the phase error function, realizes the self-focusing processing of the SAR image, so as to improve the defect that the PGA algorithm estimates the first derivative of the phase error function because of the low estimation accuracy caused by the accumulation of noise.

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Embodiment Construction

[0022] The technical solution of the invention will be described in detail below in conjunction with the accompanying drawings.

[0023] For an ideal SAR image, it is assumed that the Doppler frequency of the strongest scattering point at the kth distance unit is f k , the initial phase is ψ k (that is, a fixed phase), and other weak scattering points are regarded as clutter. The received signal phase of the strongest scattering point in the azimuth data domain is:

[0024]

[0025] Among them, the subscript k represents the kth distance unit; m represents the azimuth pulse position; Interference phase caused by clutter. When the ideal SAR image is affected by the phase error, the received signal phase is:

[0026]

[0027] Among them, γ(m) is the phase error value, that is, the estimated phase value required by the self-focusing algorithm.

[0028] (1) Cyclic shift

[0029] In the self-focusing algorithm based on the eigenvector method, the strongest scattering p...

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Abstract

The invention discloses an SAR real time self-focusing method based on phase error direct estimate, belonging to the radar imaging technology field. The method comprises the steps as follows: selecting strongest scattering point of each distance unit below the PGA algorithm processing structure, removing the strongest scattering point of each distance unit to the centre of the distance unit, adding window for the image of each distance unit, obtaining the fixed phase difference value between the remaining distance unit and the reference distance unit, eliminating the fixed phase difference value from each distance unit, having weighted average on the distance unit signal after eliminating the fixed phase difference value to obtain the phase error function, and compensating the phase error function. The phase error function is directly estimated after executing the unbiased estimation on the fixed phase difference for reducing the iterative times, reducing operation number, obviously improving focusing quality, the method is applied to the SAR image with long-scale contrast and without stronger target.

Description

technical field [0001] The invention discloses a SAR real-time self-focusing method based on phase error direct estimation, and belongs to the technical field of radar imaging. Background technique [0002] Synthetic aperture radar (SAR) has the capability of high-resolution imaging under all-weather and all-weather conditions. Since SAR is a coherent imaging system, there is a close relationship between the SAR image and the phase of the received signal. The inevitable various approximations in the SAR imaging algorithm, as well as the deviation of the aircraft from the ideal track, speed and flight attitude during the actual flight, will cause a large phase error of the received signal, which will lead to the deterioration of the image focus quality. Significantly decreased. Especially in high-resolution imaging systems, the image defocusing phenomenon caused by the non-ideal motion of the antenna is more serious because of the longer aperture time required. Even if an ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G01S13/90G01S7/02
CPCG01S13/90G01S13/9017G01S13/9019
Inventor 蒋锐
Owner 南京华睿智光信息科技研究院有限公司
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