4.7 Article

Sparse Nested Arrays With Spatially Spread Orthogonal Dipoles: High Accuracy Passive Direction Finding With Less Mutual Coupling

期刊

出版社

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/TAES.2021.3054056

关键词

Mutual coupling; Sensor arrays; Couplings; Estimation; Signal processing algorithms; Mathematical model; Spatial resolution; Array signal processing; dipole antennas; direction-finding; mutual coupling; nested array (NA); sparse array

资金

  1. National Natural Science Foundation of China [61771302]
  2. Advanced Research Foundation [61404130217]

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The paper introduces a new array structure SNODA that can reduce mutual coupling between sensors and achieve accurate estimation of direction.
In sensor array processing, the minimum sensor/element-spacing is usually restricted within a half-wavelength in order to avoid estimation aliasing. This would cause sensor/element mutual coupling when antenna-electromagnetics are considered. Based on the recently proposed nested array (NA) concept, we present a new type of NA called sparse nested spatially spread orthogonal dipole array (SNODA) to realize underdetermined direction finding with less mutual coupling. In SNODA, the sensor/element-spacing can be extended to be much higher than a half-wavelength so that the effect of sensor coupling will be much reduced. The direction estimation ambiguities caused by aperture extension is resolved by combining both spatial and element responses of spread orthogonal dipoles. Matlab code for reproduction of the results is available at https://github.com/jinhesjtu/SNODA-DF.git.

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