A Bounded Space Correction Method for Low-Frequency Super-Directional Multipole Sub-Vector Array

A super-directivity and correction method technology, applied in radio wave measurement systems, instruments, etc., can solve problems such as complex problems, increased difficulty of low-frequency correction, non-negligible correction space, etc., and achieves the effect of wide application and strong operability
CN107037418BActive Publication Date: 2019-10-18HARBIN ENG UNIV

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
HARBIN ENG UNIV
Publication Date
2019-10-18

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Abstract

The present invention belongs to the field of underwater acoustic vector array calibration, and more particularly relates to a bounded space correction method for the low-frequency directional multi-polar vector array for the calibration of the super-directional multi-polar vector array within the low-frequency ranging from 20 to 1000 hz. The method comprises the following steps: establishing a super-directional multi-polar vector array including 0 to 4 matrixes; producing by a modulating signal generator a CW pulse signal to be loaded by a power amplifier into a sound source to form a testing sound field; rotating super-directional multi-polar vector array for 0 to 360 degrees; and collecting and storing the receiving signals of the 0 to 4 elements with each array element consisting of a sound pressure signal and two channels of vibration velocity communication signals, etc. The method of the invention overcomes the problem that currently, the calibration of a small-scale array needs a large-scale free field space and provides a calibration method for bounded water areas. The method has strong operability, is convenient and practical to use and can be widely used in the calibration of low-frequency super-directional vector array, making it widely used in various fields of low-frequency water sound metering.
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Description

technical field

[0001] The invention belongs to the field of underwater acoustic vector array correction, in particular to a bounded space correction method for low-frequency super-directivity multipole sub-vector array correction in the low frequency range of 20-1000 Hz. Background technique

[0002] In the low-frequency and very low-frequency working section, the Rayleigh limit of traditional sonar design seriously restricts the application of underwater acoustic array and its azimuth estimation performance. The breakthrough in the research work of super-directional matrix provides a solution to this problem. In recent years, the super-directional array beamforming method based on small aperture has become a research hotspot. A large number of design analysis and computer simulations have shown the advantages of this type of array, but only a limited number of finished systems have been used in actual work. One of the main reasons is the strong sensitivity of this type of...

Claims

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