Secure Degrees of Freedom Region of the Two-User MISO Broadcast Channel with Alternating CSIT
February 09, 2015 Β· Declared Dead Β· π IEEE Transactions on Information Theory
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Authors
Pritam Mukherjee, Ravi Tandon, Sennur Ulukus
arXiv ID
1502.02647
Category
cs.IT: Information Theory
Cross-listed
cs.CR
Citations
35
Venue
IEEE Transactions on Information Theory
Last Checked
6 months ago
Abstract
The two user multiple-input single-output (MISO) broadcast channel with confidential messages (BCCM) is studied in which the nature of channel state information at the transmitter (CSIT) from each user can be of the form $I_{i}$, $i=1,2$ where $I_{1}, I_{2}\in \{\mathsf{P}, \mathsf{D}, \mathsf{N}\}$, and the forms $\mathsf{P}$, $\mathsf{D}$ and $\mathsf{N}$ correspond to perfect and instantaneous, completely delayed, and no CSIT, respectively. Thus, the overall CSIT can alternate between $9$ possible states corresponding to all possible values of $I_{1}I_{2}$, with each state occurring for $Ξ»_{I_{1}I_{2}}$ fraction of the total duration. The main contribution of this paper is to establish the secure degrees of freedom (s.d.o.f.) region of the MISO BCCM with alternating CSIT with the symmetry assumption, where $Ξ»_{I_{1} I_{2}}=Ξ»_{I_{2}I_{1}}$. The main technical contributions include developing a) novel achievable schemes for MISO BCCM with alternating CSIT with security constraints which also highlight the synergistic benefits of inter-state coding for secrecy, b) new converse proofs via local statistical equivalence and channel enhancement; and c) showing the interplay between various aspects of channel knowledge and their impact on s.d.o.f.
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