4.7 Article

Achievable DoF Regions of Three-User MIMO Broadcast Channel With Delayed CSIT

Journal

IEEE TRANSACTIONS ON COMMUNICATIONS
Volume 69, Issue 4, Pages 2240-2253

Publisher

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/TCOMM.2021.3049399

Keywords

Arbitrary antenna configurations; achievable DoF region; delayed CSIT; three-user MIMO broadcast channel; transformation approach

Funding

  1. National Natural Science Foundation of China [61771232]
  2. Project The Verification Platform of Multi-tier Coverage Communication Network for Oceans [LZC0020]

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This paper designs transmission schemes for a three-user MIMO broadcast channel with delayed CSIT and arbitrary antenna configurations, and analyzes the achievable DoF region through a transformation approach. The decoding condition of the transmission scheme is transformed into the achievable DoF region, connecting phase duration and achievable DoF, characterizing the DoF region of order-2 messages and expressing an achievable DoF region for order-1 messages.
For the two-user multiple-input multiple-output (MIMO) broadcast channel with delayed channel state information at the transmitter (CSIT) and arbitrary antenna configurations, all the degrees-of-freedom (DoF) regions are obtained. However, for the three-user MIMO broadcast channel with delayed CSIT and arbitrary antenna configurations, the DoF region of order-2 messages is still unclear and only a partial achievable DoF region of order-1 messages is obtained, where the order-2 messages and order-1 messages are desired by two receivers and one receiver, respectively. In this paper, for the three-user MIMO broadcast channel with delayed CSIT and arbitrary antenna configurations, we first design transmission schemes for order-2 messages and order-1 messages. Next, we propose to analyze the achievable DoF region of transmission scheme by transformation approach. In particular, we transform the decoding condition of transmission scheme w.r.t. phase duration into the achievable DoF region w.r.t. achievable DoF, through achievable DoF tuple expression connecting phase duration and achievable DoF. As a result, the DoF region of order-2 messages is characterized and an achievable DoF region of order-1 messages is completely expressed. Besides, for order-1 messages, we derive the sufficient condition, under which the proposed achievable DoF region is the DoF region.

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