On the Capacity of Fading MIMO Broadcast Channels with Imperfect Transmitter Side-Information
arXiv:cs/0605079
Abstract
A fading broadcast channel is considered where the transmitter employs two antennas and each of the two receivers employs a single receive antenna. It is demonstrated that even if the realization of the fading is precisely known to the receivers, the high signal-to-noise (SNR) throughput is greatly reduced if, rather than knowing the fading realization \emph{precisely}, the trasmitter only knows the fading realization \emph{approximately}. The results are general and are not limited to memoryless Gaussian fading.
Extended version of a paper of the same title that appeared in the Proceedings of the 43rd Annual Allerton Conference on Communication, Control, and Computing, Sept. 28-30, 2005
Cited by in corpus (12)
- On Degrees of Freedom Region of MIMO Networks without CSIT
- On the Degrees of Freedom of the Compound MIMO Broadcast Channels with Finite States
- Aligned Image Sets under Channel Uncertainty: Settling a Conjecture by Lapidoth, Shamai and Wigger on the Collapse of Degrees of Freedom under Finite Precision CSIT
- Retrospective Interference Alignment
- On the Synergistic Benefits of Alternating CSIT for the MISO BC
- Elements of Cellular Blind Interference Alignment --- Aligned Frequency Reuse, Wireless Index Coding and Interference Diversity
- On the Degrees of Freedom of Finite State Compound Wireless Networks - Settling a Conjecture by Weingarten et. al
- Ergodic Fading One-sided Interference Channels without State Information at Transmitters
- On the Fading Paper Achievable Region of the Fading MIMO Broadcast Channel
- The DoF Region of the Multiple-Antenna Time Correlated Interference Channel with Delayed CSIT
- Degrees of Freedom Region of the MIMO Broadcast Channel with Partial CSIT: An Application of Sum-set Inequalities Based on Aligned Image Sets
- Topological Interference Management: Linear Cooperation is not useful for Wyner's Networks