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Limits of Reliable Communication with Low Probability of Detection on AWGN Channels

IEEE Journal on Selected Areas in Communications · 2013 · Vol. 31(9) · pp. 1921–1930
Boulat A. BashDennis GoeckelDon Towsley

Abstract

We present a square root limit on the amount of information transmitted reliably and with low probability of detection (LPD) over additive white Gaussian noise (AWGN) channels. Specifically, if the transmitter has AWGN channels to an intended receiver and a warden, both with non-zero noise power, we prove that o(√n) bits can be sent from the transmitter to the receiver in n channel uses while lower-bounding α + β ≥ 1-ε for any ε > 0, where α and β respectively denote the warden's probabilities of a false alarm when the sender is not transmitting and a missed detection when the sender is transmitting. Moreover, in most practical scenarios, a lower bound on the noise power on the channel between the transmitter and the warden is known and O(√n) bits can be sent in n LPD channel uses. Conversely, attempting to transmit more than O(√n) bits either results in detection by the warden with probability one or a non-zero probability of decoding error at the receiver as n→∞.

Wireless Communication Security TechniquesPower Line Communications and NoiseDistributed Sensor Networks and Detection AlgorithmsAdditive white Gaussian noiseTransmitterDecoding methodsFalse alarmChannel (broadcasting)Communication sourceStatistical powerNoise (video)Gaussian noise
Citations
886
FWCI
7.93
field-weighted impact
References
22
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References
New exponential bounds and approximations for the computation of error probability in fading channels
IEEE Transactions on Wireless Communications · 2003 · 886 citations
The Gaussian wire-tap channel
IEEE Transactions on Information Theory · 1978 · 2,043 citations
Broadcast channels with confidential messages
IEEE Transactions on Information Theory · 1978 · 3,330 citations
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