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Open AccessJournal ArticleDOI

A Survey on Higher-Order QAM Constellations: Technical Challenges, Recent Advances, and Future Trends

TLDR
In this article, power and bandwidth efficient modulation schemes for the next generation communication systems in details are surveyed and detailed study of star QAM, XQAM, and HQAM is presented.
Abstract
Communication system’s performance is sensitive to bandwidth, power, cost etc. There have been various solutions to improve the performance, out of them, one of the fundamental solutions over the years is design of optimum modulation schemes. As the research on beyond 5G heats up, we survey and explore power and bandwidth efficient modulation schemes for the next generation communication systems in details. In the existing literature, initially square quadrature amplitude modulation (SQAM) was considered. However, only square constellations are not sufficient for varying channel conditions and rate requirements, thus, efficient odd power of 2 constellations were introduced. For odd power of 2 constellations, rectangular QAM (RQAM) is most commonly used. However, RQAM is not a good choice and modified cross QAM (XQAM) constellation is preferred which provides improved power efficiency over RQAM due to its energy efficient two dimensional (2D) structure. The increasing demand for high data-rates has further encouraged research towards more compact 2D constellations which leads to hexagonal lattice structure based hexagonal QAM (HQAM) constellations. In this work, various QAM constellations are discussed and detailed study of star QAM, XQAM, and HQAM is presented. Generation, peak and average energies, peak-to-average-power ratio, symbol-error-rate, decision boundaries, bit mapping, Gray code penalty, and bit-error-rate of star QAM, XQAM, and HQAM constellations for different constellation orders are presented. Finally, a comparative study of various QAM constellations is presented which justifies the supremacy of HQAM over other QAM constellations for various wireless communication systems and a potential modulation scheme for future standards.

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Citations
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Journal ArticleDOI

Power Allocation for Reliable SIC Detection of Rectangular QAM-based NOMA Systems

TL;DR: The obtained numerical results show that power assignment process at the transmitter for the superposition process and at the receiver for the SIC process should be performed meticulously because the power difference between the weakest and strongest users can be tremendous when the number of users or the modulation orders increase.
Journal ArticleDOI

ASER Analysis of Hybrid Receiver Based SWIPT Two-Way Relay Network

TL;DR: This paper investigates the performance of a hybrid receiver-based simultaneous wireless information and power transfer (SWIPT) two-way relay network over Nakagami-m faded channels and derived analytical expressions of outage probability and asymptotic OP are derived.

Performance analysis of vertical multihop cooperative underwater visible light communication system with imperfect channel state information

TL;DR: Underwater VLC with concatenated L layered UWVLC is considered and it is observed that there is a drastic degradation in the performance as the depth is increased, however, the severity can be alleviated by installing multiple relays between the transmitter and the receiver.
Proceedings ArticleDOI

On Outage Probability Analysis of Uplink Cooperative VFD-NOMA over Nakagami-m Faded Channels

TL;DR: In this paper, the performance of an uplink VFD-NOMA system with a base station, two relays, and two cell-edge uplink users is analyzed over generalized Nakagami-m fading channels.
References
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Cooperative diversity in wireless networks: Efficient protocols and outage behavior

TL;DR: Using distributed antennas, this work develops and analyzes low-complexity cooperative diversity protocols that combat fading induced by multipath propagation in wireless networks and develops performance characterizations in terms of outage events and associated outage probabilities, which measure robustness of the transmissions to fading.
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Wireless Communications

Book

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Journal ArticleDOI

Space-time block codes from orthogonal designs

TL;DR: A generalization of orthogonal designs is shown to provide space-time block codes for both real and complex constellations for any number of transmit antennas and it is shown that many of the codes presented here are optimal in this sense.
Journal ArticleDOI

Multicarrier modulation for data transmission: an idea whose time has come

TL;DR: The general technique of parallel transmission on many carriers, called multicarrier modulation (MCM), is explained, and the performance that can be achieved on an undistorted channel and algorithms for achieving that performance are discussed.