Title :
Combined tone and noise jamming against coded FH/MFSK ECCM radios
Author :
Kwon, Hyuck M. ; Lee, Pil Joong
Author_Institution :
Lockheed Eng. & Sci. Co., Houston, TX, USA
fDate :
6/1/1990 12:00:00 AM
Abstract :
The authors conjecture that a proper combination of partial-band tone jamming (PBTJ) and full-band noise jamming (FBNJ) under a given total jamming power constraint may be more effective than PBTJ alone, not only for the case with a low (Es/NJ), but also for the case with high Es/NJ, since the FBNJ can corrupt the jamming state information (JSI). Assuming this combination of PBTJ and FBNJ jamming, they consider three cases of receiver processing-the hard decision (HD) metric without JSI, the HD metric with perfect JSI, and the maximum-likelihood (ML) metric using Viterbi´s ratio threshold (VRT) to generate a 1-b symbol decision quality indicator. System performance is evaluated in terms of the Chernoff bound on the probability of symbol error. From extensive numerical analysis the authors conclude that, for the case of the HD metric without JSI, PBTJ-only jamming is the worst form of jamming, as expected, since the receiver does not use JSI at all; for the other cases, a combination of PBTJ and FBNJ is the worst, with the worst ratio of PBTJ power to FBNJ power a function of the values of M and Es/NJ
Keywords :
electronic countermeasures; frequency agility; frequency shift keying; jamming; probability; radio receivers; spread spectrum communication; Chernoff bound; ECCM radios; Viterbi´s ratio threshold; coded frequency-hopped/M-ary FSK; full-band noise jamming; hard decision metric receiver; jamming state information; maximum likelihood metric receiver; partial-band tone jamming; probability; spread spectrum; symbol error; Electronic countermeasures; Electronic warfare; Frequency shift keying; High definition video; Jamming; Maximum likelihood decoding; Numerical analysis; Performance analysis; Signal to noise ratio; System performance;
Journal_Title :
Selected Areas in Communications, IEEE Journal on