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Target detecting method of weighted robust broadband beam forming

A target detection and robust technology, applied in radio wave measurement systems, instruments, etc., can solve problems such as the inability to meet the needs of remote target detection

Active Publication Date: 2015-05-27
INST OF ACOUSTICS CHINESE ACAD OF SCI
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AI Technical Summary

Problems solved by technology

The detection technology commonly used in passive sonar—the energy accumulation detection method can no longer meet the needs of long-range target detection.

Method used

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  • Target detecting method of weighted robust broadband beam forming
  • Target detecting method of weighted robust broadband beam forming
  • Target detecting method of weighted robust broadband beam forming

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Embodiment Construction

[0040] The technical solutions of the present invention will be described in further detail below with reference to the accompanying drawings and embodiments.

[0041] According to the feature that the underwater target radiation noise contains a high-intensity stable line spectrum, the main and side lobe amplitudes of the target line spectrum frequency unit beam formation are relatively large and stable; while the noise frequency unit beam forms the main and side lobe amplitude The difference is relatively small and relatively random, so a robust broadband beamforming target detection method based on beamforming main-side lobe ratio weighting is proposed. This method can effectively suppress background noise energy interference, enhance the signal-to-noise ratio gain of target detection, and overcome the difficulty of traditional line spectrum detection in four-dimensional display. And through theoretical analysis and experimental results, it is verified that the method of th...

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Abstract

The invention relates to a target detecting method of weighted robust broadband beam forming. The target detecting method comprises theoretical analysis, theoretical derivation, numerical simulation, algorithm improvement and result verification, and comprises the following steps: according to the characteristic that radiated noise of an underwater target contains a high-strength steady line spectrum, utilizing the characteristics that an amplitude difference between a main lobe and a minor lobe of frequency unit beam forming of the line spectrum of the target is larger and steadier, and an amplitude difference between a main lobe and a minor lobe of frequency unit beam forming of the noise is smaller and more random, firstly optimizing each frequency band beam forming by a second-order cone so as to obtain high gain beam forming of a low side lobe; then forming a weighting factor by utilizing a difference between the main lobe and the minor lobe of each frequency unit beam forming; then performing weighting statistics on each frequency unit beam forming by utilizing the weighting factor. The target detecting method can restrain the interference of background noise energy, enhance the gain of the signal to noise ratio of the target detection, overcome the difficulties of four-dimensional display of detecting a traditional line spectrum, improve the properties of an energy accumulation detecting method for long-range target detection, and improve the robustness of general broadband beam forming.

Description

technical field [0001] The invention relates to the field of sonar signal processing, in particular to a weighted robust broadband beamforming target detection method. Background technique [0002] Because passive sonar does not radiate signals to the outside, it has strong concealment and has always been one of the important means to detect, locate, track and identify underwater targets. However, with the continuous improvement of noise reduction technology, the signal-to-noise ratio of passive sonar received data is continuously reduced, and the performance requirements for passive sonar are becoming more and more stringent. The detection technology commonly used in passive sonar—the energy accumulation detection method can no longer meet the needs of long-range target detection. Scholars have proved through theory and experiments that the radiated noise of underwater targets contains rich single-frequency components, especially in the low-frequency range. The rotation of...

Claims

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Application Information

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IPC IPC(8): G01S7/537
CPCG01S7/52
Inventor 郑恩明陈新华余华兵李媛孙长瑜
Owner INST OF ACOUSTICS CHINESE ACAD OF SCI
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