On the Application of Quasi-Degradation to Network NOMA in Downlink CoMP Systems
Yanshi Sun, Zhiguo Ding, Xuchu Dai, Momiao Zhou, Zhizhong Ding

TL;DR
This paper explores the use of quasi-degraded channels to simplify precoding in network NOMA for downlink CoMP systems, achieving near-optimal power efficiency with reduced complexity.
Contribution
It derives the QD condition for CoMP scenarios, provides closed-form precoders, and proposes a hybrid NOMA scheme and user pairing algorithm to enhance performance.
Findings
H-N-NOMA achieves near-optimal power with simple precoding.
QDUP algorithm effectively exploits multi-user diversity.
Numerical results confirm superior performance of proposed schemes.
Abstract
The application of network non-orthogonal multiple access (N-NOMA) technique to coordinated multi-point (CoMP) systems has attracted significant attention due to its superior capability to improve connectivity and maintain reliable transmission for CoMP users simultaneously. Based on the concept of quasi-degraded channel for N-NOMA, this paper studies the precoding design for downlink N-NOMA scenarios with two base stations (BSs) equipped with multiple antennas. In specific, under quasi-degraded channels, simple linear precoding based N-NOMA can achieve the same minimal total transmission power as theoretically optimal but complicated dirty paper coding (DPC) scheme, when the users' target rates and minimal transmission power of each BS are given. In this paper, the channel quasi-degradation (QD) condition is first rigorously derived for the scenario with single CoMP user and two NOMA…
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Taxonomy
TopicsAdvanced Wireless Communication Technologies · Optical Wireless Communication Technologies · Advanced MIMO Systems Optimization
