Interference Alignment with Imperfect Channel Knowledge and Secrecy Constraints
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Summary
In this thesis, the degrees of freedom (DOF) of wireless networks are studied with imperfect channel state information at transmitters (CSIT) and/or secrecy constraints.
- Type
- article
- Published
- 2015-01-01
- Cited by
- 1
- References
- 118
- Access
- Open access
- OpenAlex
- https://openalex.org/W308032369
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:16417876
Keywords
Secrecy, Imperfect, Channel (broadcasting), Interference (communication), Computer science
References
- Information-Spectrum Methods in Information Theory
- Information Theory: 1948-1998 - Guest Editorial
- Strong secrecy for interference channels : Achievable rate region and degrees of freedom
- Secrecy from Resolvability
- MIMO Wiretap Channels with Arbitrarily Varying Eavesdropper Channel States
- Probability, Random Processes, And Ergodic Properties
- The Degrees of Freedom Regions of Two-User and Certain Three-User MIMO Broadcast Channels with Delayed CSIT
- Information Theory: Multi-terminal systems
- Secrecy degrees of freedom of the two-user MISO broadcast channel with mixed CSIT
- Capacity of 1-to-K broadcast packet erasure channels with channel output feedback
- Multiuser Broadcast Erasure Channel With Feedback—Capacity and Algorithms
- Secrecy degrees of freedom of wireless X networks using artificial noise alignment
- On the Secure Degrees-of-Freedom of the Multiple-Access-Channel
- Two-Unicast Wireless Networks: Characterizing the Degrees of Freedom
- On Achievable Degrees of Freedom for MIMO X Channels
- Topological Interference Management Through Index Coding
- Khintchine-type theorems on manifolds: the convergence case for standard and multiplicative versions
- Interference Alignment and Degrees of Freedom of the K-User Interference Channel
- High SNR Analysis for MIMO Broadcast Channels: Dirty Paper Coding Versus Linear Precoding
- Correction to: "the Gaussian multiple access wire-tap channel" and "the general Gaussian multiple access and two-way wire-tap channels: achievable rates and cooperative jamming"
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