4.7 Article

Cooperative Non-Orthogonal Layered Multicast Multiple Access for Heterogeneous Networks

期刊

IEEE TRANSACTIONS ON COMMUNICATIONS
卷 67, 期 2, 页码 1148-1165

出版社

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/TCOMM.2018.2874239

关键词

Cooperative non-orthogonal multiple access; energy saving; layered multicast; outage probability

资金

  1. National Natural Science Foundation of China [61601347, 61771366]
  2. Natural Science Basic Research Plan in the Shaanxi Province of China [2017JQ6055]
  3. Royal Society project [IEC/NSFC/170324]
  4. EPSRC IAA project [CSA7113]
  5. EPSRC project [EP/K011693/1]
  6. EU FP7 CROWN project [PIRSES-GA-2013-610524]
  7. Natural Sciences and Engineering Research Council of Canada [RGPIN-2018-06307]
  8. International Postdoctoral Exchange Fellowship Program 2017 from the Office of China Postdoctoral Council
  9. 111 Project of China [B08038]
  10. EPSRC [EP/R00692X/1, EP/K011693/1] Funding Source: UKRI

向作者/读者索取更多资源

This paper proposes a novel design of cooperative non-orthogonal layered multicast multiple access in a heterogeneous network, where the information is encoded into the messages of high priority (HP) and low priority (LP). Two types of multicast users coexist in the network: 1) regular users (RUs), which are located far away from the base station (BS) and expect to decode only the HP message (due to the weak channels), and 2) advanced users (AUs), which are located close to the BS and expect to decode both HP and LP messages. To improve the reliability of layered multicast, we consider that the successful AUs (those AUs who successfully decode the HP and LP messages) serve as potential relays to assist other AUs/RUs. Based on this idea, two novel cooperation strategies are proposed for different cases of channel information availability. For each proposed strategy, we derive closed-form exact outage probabilities of AUs and RUs and then further analyze their diversity orders. Moreover, considering that the layered multicast is outage-constrained, we theoretically evaluate the energy consumption of both strategies and demonstrate their energy saving gains over the direct non-orthogonal multiple access for layered multicast. Finally, our theoretical analysis is verified by numerical results, and the advantages of the proposed strategies are also demonstrated.

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