4.6 Article

Receiver Design for Uplink Power Domain NOMA With Discontinuous Transmissions

Journal

IEEE COMMUNICATIONS LETTERS
Volume 25, Issue 8, Pages 2738-2742

Publisher

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/LCOMM.2021.3077609

Keywords

Receivers; Multiuser detection; Uplink; NOMA; Detectors; Silicon carbide; Phase shift keying; NOMA; Internet of Things; sporadic transmissions; activity detection; multi-user detection; bit error rate

Funding

  1. Australian Government through the Australian Research Council's Discovery Projects scheme [DP180100606]

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This letter discusses the issue of handling discontinuous data streams in PD-NOMA systems, proposing the use of multiple detectors for user activity detection and performing multi-user detection. Simulation results show that the proposed detectors outperform conventional PD-NOMA receivers in terms of bit error rate.
Uplink power domain non-orthogonal multiple access (PD-NOMA) allows multiple users to simultaneously transmit their data over the same resource block by using different power levels, which are exploited by the base station (BS) for multi-user detection (MUD). Conventional PD-NOMA receivers can perform MUD when the data streams from all the multiplexed users are continuous, and the received signal is always a superposition of symbols from each user. However, the data received from each user may not always be continuous due to sporadic activity, and may contain missed packets or moments of silence. In such scenarios, the BS needs to precisely identify the users whose data packets are received at a particular time to successfully recover their messages. In this context, this letter proposes multiple detectors to efficiently detect user activity and perform MUD in such situations. It is shown through simulations that the proposed detectors significantly outperform conventional PD-NOMA receivers in terms of the bit error rate.

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