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Open AccessJournal ArticleDOI

Dual-Mode Index Modulation Aided OFDM

TLDR
A dual-mode OFDM technique is proposed, which is combined with index modulation and enhances the attainable throughput of conventional index-modulation-based OFDM and achieves a considerably better BER performance than other OFDM systems using index modulation, while imposing the same or lower computational complexity.
Abstract
Index modulation has become a promising technique in the context of orthogonal frequency division multiplexing (OFDM), whereby the specific activation of the frequency domain subcarriers is used for implicitly conveying extra information, hence improving the achievable throughput at a given bit error ratio (BER) performance. In this paper, a dual-mode OFDM technique (DM-OFDM) is proposed, which is combined with index modulation and enhances the attainable throughput of conventional index-modulation-based OFDM. In particular, the subcarriers are divided into several subblocks, and in each subblock, all the subcarriers are partitioned into two groups, modulated by a pair of distinguishable modem-mode constellations, respectively. Hence, the information bits are conveyed not only by the classic constellation symbols, but also implicitly by the specific activated subcarrier indices, representing the subcarriers’ constellation mode. At the receiver, a maximum likelihood (ML) detector and a reduced-complexity near optimal log-likelihood ratio-based detector are invoked for demodulation. The minimum distance between the different legitimate realizations of the OFDM subblocks is calculated for characterizing the performance of DM-OFDM. Then, the associated theoretical analysis based on the pairwise error probability is carried out for estimating the BER of DM-OFDM. Furthermore, the simulation results confirm that at a given throughput, DM-OFDM achieves a considerably better BER performance than other OFDM systems using index modulation, while imposing the same or lower computational complexity. The results also demonstrate that the performance of the proposed low-complexity detector is indistinguishable from that of the ML detector, provided that the system’s signal to noise ratio is sufficiently high.

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Citations
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Journal ArticleDOI

Subband Index Carrierless Amplitude and Phase Modulation for Optical Communications

TL;DR: In this article, the authors proposed a detection scheme for SI-CAP, which achieves maximum likelihood performance at a significantly lower complexity, and an adaptive equalization technique is implemented to further enhance the performance gain.
Posted Content

Orthogonal Frequency Division Multiplexing With Subcarrier Power Modulation for Doubling the Spectral Efficiency of 6G and Beyond Networks

TL;DR: OFDM-SPM is found to greatly enhance the spectral efficiency where it is capable of doubling it and introduces negligible complexity to the system, does not exhibit error propagation, reduces the transmission delay, and decreases the transmission power by half.
Journal ArticleDOI

Zero-Padded Orthogonal Frequency Division Multiplexing with Index Modulation Using Multiple Constellation Alphabets

TL;DR: It is demonstrated via Monte Carlo simulations that ZTM-OFDM-IM is capable of enhancing the BER performance compared with the conventional OFDM and other conventional index-modulated OFDM benchmarks, which provides high-rate data transmission with low energy consumption.
Journal ArticleDOI

Vector OFDM With Index Modulation

TL;DR: Both the theoretical and the simulation-based results show that, under the same spectrum efficiency, V-OF DM-IM outperforms the conventional OFDM-IM and OFDM.
Journal ArticleDOI

Orthogonal frequency division multiplexing with subcarrier power modulation for doubling the spectral efficiency of 6G and beyond networks

TL;DR: In this article, the emergence of new applications (e.g., extended reality [XR] and haptics), which require to be simultaneously served not just with low latency and sufficient reliability, but also with high reliability, is discussed.
References
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Journal Article

Spatial Modulation

TL;DR: An analytical approach for symbol error ratio (SER) analysis of the SM algorithm in independent identically distributed Rayleigh channels results closely match and it is shown that SM achieves better performance in all studied channel conditions, as compared with other techniques.
Journal ArticleDOI

Spatial Modulation for Generalized MIMO: Challenges, Opportunities, and Implementation

TL;DR: In this paper, the authors present a comprehensive state-of-the-art survey on SM-MIMO research, to provide a critical appraisal of its potential advantages, and to promote the discussion of its beneficial application areas and their research challenges.
Journal ArticleDOI

Orthogonal Frequency Division Multiplexing With Index Modulation

TL;DR: It is shown via computer simulations that the proposed OFDM with index modulation scheme achieves significantly better error performance than classical OFDM due to the information bits carried in the spatial domain by the indices of OFDM subcarriers.
BookDOI

OFDM and MC-CDMA for Broadband Multi-User Communications, WLANs and Broadcasting: Hanzo/OFDM

TL;DR: This first complete treatment of OFDM, MIMO(Multiple Input Multiple Output)-OFDM and MC-CDMAC considers the benefits of channel coding and space time coding in the context of various application examples and features numerous complete system design examples.
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