DocumentCode
1727672
Title
Large-array signal processing of the discrete spectrum signals: basic aspects and simulations
Author
Gorodetskaya, Elena ; Malekhanov, Alexander
Author_Institution
Inst. of Appl. Phys., Russian Acad. of Sci., Nizhniy Novgorod, Russia
fYear
2005
Firstpage
257
Lastpage
259
Abstract
Signal propagation in various random-inhomogeneous nonstationary environments (in radar, sonars, and wireless communications) leads to loss of the signal coherence in space, time, and frequency. The signal coherence degradation in spatial domain is of particular interest for a large array if its size is greater as compared with the coherence length. Moreover, if a transmission channel is a case of multimode or multipath signal propagation, principal issues of large-array signal processing arise to be concerned with a discrete spatial spectrum of both desired signal and ambient noise. In this report, we give a comparative analysis of large-array signal processing techniques followed the detection problem formulation under such environmental conditions and demonstrate how and why the coherence-reduced discrete spectrum signals in the array input lead to a pronounced hierarchy of their output performances. The focus of our study is a model-based generalization of optimal array processors for the case of multimode signals in multimode noise background and realistic numerical examinations of the large-array gain in random channels, with specific applications to long-range underwater sound. The discrete spectrum signal detection by the use of large arrays is shown to be a specific scenario of array signal processing.
Keywords
array signal processing; signal detection; spectral analysis; ambient noise; array beamforming; array processors; discrete spatial spectrum; discrete spectrum signal detection; large-array signal processing; multimode signals; multipath signal propagation; random-inhomogeneous nonstationary environments; signal coherence degradation; signal noise; transmission channel; Acoustic noise; Array signal processing; Frequency; Propagation losses; Radar signal processing; Signal processing; Sonar; Spaceborne radar; Wireless communication; Working environment noise;
fLanguage
English
Publisher
ieee
Conference_Titel
Antenna Theory and Techniques, 2005. 5th International Conference on
Print_ISBN
0-7803-9261-2
Type
conf
DOI
10.1109/ICATT.2005.1496943
Filename
1496943
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