Degrees-of-Freedom Region of the MISO Broadcast Channel with General Mixed-CSIT
arXiv:1205.3474
Abstract
In the setting of the two-user broadcast channel, recent work by Maddah-Ali and Tse has shown that knowledge of prior channel state information at the transmitter (CSIT) can be useful, even in the absence of any knowledge of current CSIT. Very recent work by Kobayashi et al., Yang et al., and Gou and Jafar, extended this to the case where, instead of no current CSIT knowledge, the transmitter has partial knowledge, and where under a symmetry assumption, the quality of this knowledge is identical for the different users' channels. Motivated by the fact that in multiuser settings, the quality of CSIT feedback may vary across different links, we here generalize the above results to the natural setting where the current CSIT quality varies for different users' channels. For this setting we derive the optimal degrees-of-freedom (DoF) region, and provide novel multi-phase broadcast schemes that achieve this optimal region. Finally this generalization incorporates and generalizes the corresponding result in Maleki et al. which considered the broadcast channel with one user having perfect CSIT and the other only having prior CSIT.
References in corpus (1)
Cited by in corpus (10)
- On the Synergistic Benefits of Alternating CSIT for the MISO BC
- Imperfect and Unmatched CSIT is Still Useful for the Frequency Correlated MISO Broadcast Channel
- Minimum CSIT to achieve Maximum Degrees of Freedom for the MISO BC
- Optimal DoF Region of the Two-User MISO-BC with General Alternating CSIT
- On the Fundamental Feedback-vs-Performance Tradeoff over the MISO-BC with Imperfect and Delayed CSIT
- Degrees-of-Freedom Region of Time Correlated MISO Broadcast Channel with Perfect Delayed CSIT and Asymmetric Partial Current CSIT
- Imperfect Delayed CSIT can be as Useful as Perfect Delayed CSIT: DoF Analysis and Constructions for the BC
- DoF Analysis of the K-user MISO Broadcast Channel with Hybrid CSIT
- Space-Time Encoded MISO Broadcast Channel with Outdated CSIT: An Error Rate and Diversity Performance Analysis
- Coherence Disparity in Broadcast and Multiple Access Channels