DocumentCode :
3406401
Title :
A real-time algorithm for signal detection based on autocorrelation at low SNR
Author :
Liu, Shaocheng ; Jin, Biao ; Yang, Hujun ; Su, Tao
Author_Institution :
Nat. Lab. of Radar Signal Process., Xidian Univ., Xi´´an, China
fYear :
2010
fDate :
24-28 Oct. 2010
Firstpage :
2092
Lastpage :
2095
Abstract :
In an electronic detecting system, how to capture non-cooperative signal at low SNR is always a challenging work. This paper puts forward a real-time algorithm named Shifted-N points-Correlation Algorithm for detecting LFM (Linear Frequency Modulation) pulse signal based on digital autocorrelation. Applying a gliding window of proper length to truncate infinite signal into finite length, then calculating the autocorrelation function of the signal in the window, choosing the Nth point as the current output, finally, an envelope which represents the position and intense of the signal can be obtained, while the noise can be eliminated according to its non-relativity. This is especially suitable for detecting weak signal with unknown parameters under the background of band-limited noise. Moreover, when the parameters of the receiving system have been determined, an optimum algorithm can be found for specified system based on the MSNR Criterion. Besides, it can achieve recursive operation, which is easy for hardware to apply.
Keywords :
correlation methods; frequency modulation; interference suppression; signal detection; LFM; MSNR; SNR; digital autocorrelation function; linear frequency modulation; noise elimination; real-time algorithm; shifted-N points-correlation algorithm; signal detection; Algorithm design and analysis; Bandwidth; Correlation; Real time systems; Signal processing algorithms; Signal to noise ratio; Autocorrelation; LFM signal; MSNR; Shifted-N points-Correlation Algorithm;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Signal Processing (ICSP), 2010 IEEE 10th International Conference on
Conference_Location :
Beijing
Print_ISBN :
978-1-4244-5897-4
Type :
conf
DOI :
10.1109/ICOSP.2010.5655979
Filename :
5655979
Link To Document :
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