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Power-Domain Non-Orthogonal Multiple Access (NOMA) in 5G Systems: Potentials and Challenges

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TLDR
In this paper, the authors comprehensively survey the recent progress of NOMA in 5G systems, reviewing the state-of-the-art capacity analysis, power allocation strategies, user fairness, and user-pairing schemes in NOMAs.
Abstract
Non-orthogonal multiple access (NOMA) is one of the promising radio access techniques for performance enhancement in next-generation cellular communications. Compared to orthogonal frequency division multiple access (OFDMA), which is a well-known high-capacity orthogonal multiple access (OMA) technique, NOMA offers a set of desirable benefits, including greater spectrum efficiency. There are different types of NOMA techniques, including power-domain and code-domain. This paper primarily focuses on power-domain NOMA that utilizes superposition coding (SC) at the transmitter and successive interference cancellation (SIC) at the receiver. Various researchers have demonstrated that NOMA can be used effectively to meet both network-level and user-experienced data rate requirements of fifth-generation (5G) technologies. From that perspective, this paper comprehensively surveys the recent progress of NOMA in 5G systems, reviewing the state-of-the-art capacity analysis, power allocation strategies, user fairness, and user-pairing schemes in NOMA. In addition, this paper discusses how NOMA performs when it is integrated with various proven wireless communications techniques, such as cooperative communications, multiple input multiple output (MIMO), beamforming, space time coding, and network coding, among others. Furthermore, this paper discusses several important issues on NOMA implementation and provides some avenues for future research.

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Citations
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Wireless Information and Power Transfer in Communication Networks: Performance Analysis and Optimal Resource Allocation

TL;DR: The central goal of this thesis is to conduct a performance analysis in terms of throughput and energy efficiency, and determine optimal resource allocation strategies for wireless information and power transfer.
Journal ArticleDOI

Link performance evaluation of Uplink Precoded Multiuser MIMO-NOMA system for 5G Communication Networks

TL;DR: The link level performance of 2x2 MIMO (Multiple Input Multiple Output) NOMA uplink system with Hadamard Transform Precoding (HTP) over Rayleigh fading channel model with HTP enhances the PAPR performance by 3dB over theNon orthogonal Multiple Access (NOMA).
Proceedings ArticleDOI

Superposition Coding for URLLC Services in a 4G/5G Cooperative System

TL;DR: This paper studies dual-connectivity as an enabler for ultra reliability and specifically considers combining 4G and 5G spectrum for delivering URLLC packets, and compares different dual connectivity schemes.
Proceedings ArticleDOI

Performance Analysis of the Downlink NOMA EH Relaying Network with RTRI

TL;DR: This paper analyzes the performance of a non-orthogonal multiple access energy harvesting (EH) relaying system with the residual transmit RF impairments (RTRI) over a Rayleigh fading channel and derives expressions for outage probability (OP) and throughput.
Proceedings ArticleDOI

Capacity Characterization of Uplink NOMA in Multi-UAV Networks

TL;DR: This analysis reveals that UL NOMA enables fairness, in terms of ergodic capacity, to be achieved in the multi-UAV network, while simultaneously improving spectrum efficiency.
References
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TL;DR: This paper presents a simple two-branch transmit diversity scheme that provides the same diversity order as maximal-ratio receiver combining (MRRC) with one transmit antenna, and two receive antennas.
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TL;DR: In this paper, the authors propose a multiuser communication architecture for point-to-point wireless networks with additive Gaussian noise detection and estimation in the context of MIMO networks.
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Millimeter Wave Mobile Communications for 5G Cellular: It Will Work!

TL;DR: The motivation for new mm-wave cellular systems, methodology, and hardware for measurements are presented and a variety of measurement results are offered that show 28 and 38 GHz frequencies can be used when employing steerable directional antennas at base stations and mobile devices.
Journal ArticleDOI

Non-orthogonal multiple access for 5G: solutions, challenges, opportunities, and future research trends

TL;DR: The concept of software defined multiple access (SoDeMA) is proposed, which enables adaptive configuration of available multiple access schemes to support diverse services and applications in future 5G networks.
Journal ArticleDOI

Millimeter-Wave Cellular Wireless Networks: Potentials and Challenges

TL;DR: Measurements and capacity studies are surveyed to assess mmW technology with a focus on small cell deployments in urban environments and it is shown that mmW systems can offer more than an order of magnitude increase in capacity over current state-of-the-art 4G cellular networks at current cell densities.
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