Degrees of Freedom Region of the MIMO Interference Channel with Output Feedback and Delayed CSIT
arXiv:1109.5373 · doi:10.1109/TIT.2012.2226700
Abstract
The two-user multiple-input multiple-output (MIMO) interference channel (IC) with arbitrary number of antennas at each terminal is considered and the degrees of freedom (DoF) region is characterized in the presence of noiseless channel output feedback from each receiver to its respective transmitter and availability of delayed channel state information at the transmitters (CSIT). It is shown that having output feedback and delayed CSIT can strictly enlarge the DoF region of the MIMO IC when compared to the case in which only delayed CSIT is present. The proposed coding schemes that achieve the corresponding DoF region with feedback and delayed CSIT utilize both resources, i.e., feedback and delayed CSIT in a non-trivial manner. It is also shown that the DoF region with local feedback and delayed CSIT is equal to the DoF region with global feedback and delayed CSIT, i.e., local feedback and delayed CSIT is equivalent to global feedback and delayed CSIT from the perspective of the degrees of freedom region. The converse is proved for a stronger setting in which the channels to the two receivers need not be statistically equivalent.
Accepted for publication in IEEE Transactions on Information Theory
References in corpus (3)
Cited by in corpus (10)
- Capacity Results for Binary Fading Interference Channels with Delayed CSIT
- Secure Degrees of Freedom of MIMO X-Channels with Output Feedback and Delayed CSIT
- Distributed Space-Time Interference Alignment with Moderately-Delayed CSIT
- On the Degrees of Freedom of the K-User Time Correlated Broadcast Channel with Delayed CSIT
- Interference and X Networks with Noisy Cooperation and Feedback
- Space-Time Interference Alignment and Degrees of Freedom Regions for the MISO Broadcast Channel with Periodic CSI Feedback
- On the Degrees of Freedom of MIMO X Networks with Non-Cooperation Transmitters
- Mixed-Timescale Online PHY Caching for Dual-Mode MIMO Cooperative Networks
- Two New Kinds of Interference Alignment Schemes for Cellular K-user MIMO Downlink Networks
- Guiding Blind Transmitters: Degrees of Freedom Optimal Interference Alignment Using Relays