A Novel Designed Sparse Array for Noncircular Sources with High Degree of Freedom

Author:

Zhang Yan-kui1,Xu Hai-yun1ORCID,Wang Da-ming1,Ba Bin1ORCID,Li Si-yao2

Affiliation:

1. National Digital Switching System Engineering and Technology Research Center, Zhengzhou 450002, China

2. Communication NCO Academy, Army Engineering University, Nanjing 210000, China

Abstract

The existing coprime array is mainly applicable to circular sources, while the virtual array degree of freedom (DOF) for noncircular sources is enhanced limitedly. In order to perfect the array DOF and the direction of arrival (DOA) estimation accuracy, a high degree of freedom sparse array design method for noncircular sources is put forward. Firstly, the method takes the advantages of the characteristic of the noncircular sources to expand the array manifold and then explores and solves the location distribution of the physical array sensors on the basis of the virtual array model with the help of the searching approach. The array configuration can obtain the longest continuous virtual array. The comparisons between the proposed array configuration and the common array configurations are advanced. The simulation experiments show that the sparse array presented in this paper can effectively increase the continuous virtual array aperture of noncircular sources, improve the array DOF and DOA estimation accuracy, and achieve the purpose of better estimation of multiple DOAs in underdetermined conditions.

Funder

National Natural Science Foundation of China

Publisher

Hindawi Limited

Subject

General Engineering,General Mathematics

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1. Investigation of Characteristics of Sparse Antenna Systems;2023 12th Mediterranean Conference on Embedded Computing (MECO);2023-06-06

2. Investigation of the Characteristics of a Sparse Antenna System;2023 Wave Electronics and its Application in Information and Telecommunication Systems (WECONF);2023-05-29

3. Investigation of the Characteristics of a Sparse Linear Antenna Array;2023 XXVI International Conference on Soft Computing and Measurements (SCM);2023-05-24

4. A Novel Method for Placing the Sensors for Noncircular Sources in DOA Estimation to Reduce the Mutual Coupling;2023 3rd International Conference on Range Technology (ICORT);2023-02-23

5. General Array Optimization Strategy for Noncircular Sources with the Minimum Mutual Coupling;2022 3rd International Conference on Electronics, Communications and Information Technology (CECIT);2022-12

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