Title
Optimal Zero-delay Jamming over an Additive Noise Channel
Abstract
This paper considers the problem of optimal zerodelay jamming over an additive noise channel. Building on a sequence of recent results on conditions for linearity of optimal estimation, and of optimal mappings in source-channel coding, the saddle-point solution to the jamming problem is derived for general sources and channels, without recourse to Gaussianity assumptions. The linearity conditions are shown to play a pivotal role in jamming, in the sense that the optimal jamming strategy is to effectively force both the transmitter and the receiver to default to linear mappings, i.e., the jammer ensures, whenever possible, that the transmitter and the receiver cannot benefit from non-linear strategies. This result is shown to subsume the known result for Gaussian source and channel. The conditions and general settings where such unbeatable strategy can indeed be achieved by the jammer are analyzed. Moreover, a numerical procedure is provided to approximate the optimal jamming strategy in the remaining (source-channel) cases where the jammer cannot impose linearity on the transmitter and the receiver. Next, the analysis is extended to vector sources and channels. This extension involves a new aspect of optimization: the allocation of available transmit and jamming power over source and channel components. Similar to the scalar setting, the saddle-point solution is derived by using the linearity conditions in vector spaces. The optimal power allocation strategies for the jammer and the transmitter have an intuitive interpretation as the jammer allocates power according to water-filling over the channel eigenvalues, while the transmitter performs waterpouring (reverse water-filling) over the source eigenvalues.
Year
DOI
Venue
2015
10.1109/TIT.2015.2445344
IEEE Trans. Information Theory
Keywords
Field
DocType
correlated jamming,linearity conditions,water-filling power allocation,zero-delay source-channel coding,zero-sum games
Discrete mathematics,Topology,Mathematical optimization,Computer science,Communication channel,Zero-sum game,Jamming,Channel capacity
Journal
Volume
Issue
ISSN
PP
99
0018-9448
Citations 
PageRank 
References 
4
0.49
16
Authors
3
Name
Order
Citations
PageRank
Akyol, E.1505.27
Kenneth Rose21261119.38
Tamer Basar33497402.11