DocumentCode :
1809374
Title :
A frequency diversity spread spectrum system for communication in the presence of in-band interference
Author :
Kaleh, Ghassan Kawas
Author_Institution :
Ecole Nat. Superieure des Telecommun., Paris, France
fYear :
1995
fDate :
13-17 Nov 1995
Firstpage :
66
Lastpage :
70
Abstract :
Protection against in-band interference is required in antijam systems and when low level spread spectrum signals are overlaid on top of existing narrow-band users. We propose a secure spread-spectrum system whose optimum receiver is easy to build. We use frequency diversity which allows the receiver to distinguish unjammed signal replicas from their jammed versions. The system can also resist bandlimited partial-time jamming. The only choice left to a wise jammer to maximize our error probability is to spread his signal like ours. We derive the optimum receiver which jointly performs symbol detection and interference rejection. Side information, needed by this receiver, can easily be estimated. However, if the interference bandwidth is narrow enough compared to the signal bandwidth, side information is not needed by a simpler and near-optimum receiver. The bit error probability is evaluated for QPSK modulation and compared with that of direct sequence spread-spectrum
Keywords :
Gaussian channels; data communication; diversity reception; error statistics; jamming; quadrature phase shift keying; radiofrequency interference; receivers; spread spectrum communication; QPSK modulation; antijam systems; bandlimited partial-time jamming; communication; direct sequence spread-spectrum; error probability; frequency diversity spread spectrum system; in-band interference; interference bandwidth; interference rejection; low level spread spectrum signals; narrow-band users; near-optimum receiver; optimum receiver; security; signal bandwidth; symbol detection; unjammed signal replicas; Communication system security; Data communication; Diversity methods; Electromagnetic radiative interference; Error analysis; Gaussian channels; Quadrature phase shift keying; Receivers; Spread spectrum communication;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Global Telecommunications Conference, 1995. Conference record. Communication Theory Mini-Conference, GLOBECOM '95., IEEE
Print_ISBN :
0-7803-2509-5
Type :
conf
DOI :
10.1109/CTMC.1995.502933
Filename :
502933
Link To Document :
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