DocumentCode :
2511283
Title :
Predict temporal structure of the signal and the noise
Author :
Revathi, R. ; Kavitha, T.
Author_Institution :
Dhanalakshmi Srinivasan Eng. Coll., Perambalur, India
fYear :
2010
fDate :
13-15 Nov. 2010
Firstpage :
441
Lastpage :
447
Abstract :
Traditional spatial-temporal adaptive signal processing techniques are often applied to conduct narrowband and wideband interferences. However, its mitigation performance degrades greatly due to mutual coupling. To solve this problem, this paper aims to utilize a spatial-temporal self-tuning synthesis filter capable of mutual coupling compensation and interference mitigation. The spatial filter and temporal filter are to compensate for the effect of mutual coupling and interference mitigation, respectively. Self-tuning mechanism is to adopt least square (LS) and minimum variable distortionless response-(MVDR-) based method to adjust spatial and temporal weights of antenna array. The experiment platform is established by the embedded development board. Simulation and experiment results demonstrate that the proposed method can effectively compensate for mutual coupling, mitigate the cochannel interference up to 30 dB, and enhance the acquisition performance of receivers in global navigation satellite system (GNSS).
Keywords :
adaptive signal processing; antenna arrays; array signal processing; cochannel interference; filtering theory; interference suppression; least squares approximations; satellite antennas; spatial filters; GNSS receivers; Global Positioning System; MVDR based method; antenna array; cochannel interference mitigation; embedded development board; global navigation satellite system; least square method; minimum variable distortionless response based method; mutual coupling compensation; narrowband interferences; spatial-temporal adaptive signal processing techniques; spatial-temporal self-tuning synthesis filter; temporal structure signal prediction; wideband interferences; Antenna arrays; Arrays; Global Positioning System; Interference; Mutual coupling; Noise;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Recent Advances in Space Technology Services and Climate Change (RSTSCC), 2010
Conference_Location :
Chennai
Print_ISBN :
978-1-4244-9184-1
Type :
conf
DOI :
10.1109/RSTSCC.2010.5712885
Filename :
5712885
Link To Document :
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