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A Multi-Snapshot Iterative Array Element Amplitude and Phase Error Estimation Method with Time Domain Dimensionality Reduction

A technology of array element amplitude and phase error and time domain, which is applied in the field of multi-snapshot iterative array element amplitude and phase error estimation of time domain dimensionality reduction, can solve the problems of high performance requirements of auxiliary signal sources and increase system complexity, and avoid The algorithm does not converge, reduces the amount of calculation, and estimates the effect of accuracy

Active Publication Date: 2021-08-13
XIDIAN UNIV
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Problems solved by technology

Active correction is a method of off-line correction of the error of the element by using an external accurately known auxiliary source. This method can achieve better results in theory, but it has higher performance requirements for the auxiliary source and increases the complexity of the system.

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  • A Multi-Snapshot Iterative Array Element Amplitude and Phase Error Estimation Method with Time Domain Dimensionality Reduction
  • A Multi-Snapshot Iterative Array Element Amplitude and Phase Error Estimation Method with Time Domain Dimensionality Reduction
  • A Multi-Snapshot Iterative Array Element Amplitude and Phase Error Estimation Method with Time Domain Dimensionality Reduction

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Embodiment Construction

[0073] The present invention will be described in further detail below in conjunction with specific examples, but the embodiments of the present invention are not limited thereto.

[0074] A multi-snapshot iterative array element amplitude and phase error estimation method with dimensionality reduction in the time domain, such as figure 1 As shown, the method steps are as follows:

[0075] Step 1: Take out the echo data x of L distance units received by the radar after pulse compression l , where l=1,2,...,L, and construct the clutter representation basis matrix ψ of these L distance units l ,(l=1,2,...,L);

[0076] Step 2: Using the time-domain dimensionality reduction method, the echo data x l and clutter represent the basis matrix ψ l Carry out time-domain dimensionality reduction processing to obtain echo data z after dimensionality reduction K,l and clutter represent the basis matrix ψ K,l , where l=1,2,...,L;

[0077] Step 3: Initialize the norm p of the received ...

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Abstract

The invention belongs to the field of radar technology, and in particular relates to a multi-snapshot iterative array element amplitude and phase error estimation method with dimensionality reduction in the time domain. The steps of the method are as follows: step 1, according to the echo data x l Construct the base matrix; step 2, use the time-domain dimensionality reduction method to obtain the echo data z after dimensionality reduction K,l and clutter represent the basis matrix ψ K,l ; Step 3, according to the dimensionality-reduced echo data z K,l Obtain the norm of the echo data after dimensionality reduction; step 4, calculate the complex amplitude of the clutter data of each range unit in the i-th iteration step 5, calculate the optimal estimate of the array element amplitude and phase error e s,opt . This method is a method for estimating array element amplitude and phase errors with dimensionality reduction in time domain, high estimation accuracy and automatic convergence.

Description

technical field [0001] The invention belongs to the technical field of radar, and in particular relates to a multi-snapshot iterative array element amplitude and phase error estimation method for dimensionality reduction in the time domain. Background technique [0002] With the rapid development of information science and technology, national defense has entered the information age. As the key equipment to win the modern information war, the airborne early warning radar is regarded by the militaries of various countries as a sharp weapon for information acquisition that can influence the battlefield situation due to its unique strategic characteristics. The clutter suppression performance is the main factor affecting whether the airborne early warning radar can work normally. The space-time adaptive processing STAP technology first proposed by Brennan and Reed can effectively suppress space-time coupled ground clutter, and is a prototype of the STAP method. [0003] Many ...

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): G01S7/40
CPCG01S7/40G01S7/4004
Inventor 王彤马欣刘程王萌
Owner XIDIAN UNIV