Investigating High Performance Implementations of Sparse Code Multiple Access (SCMA) Codebook Design

Halar Mustafa, Muhammad Ahsan Shaikh, M. Sikander, S. Rehman, Mohammed Rafiq
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Abstract

Abstract -The number of mobile devices, IoT devices, and their applications is increasing day by day in recent years and further going to increase in coming years. These applications and devices demand large connectivity, high throughput, and low latency which can be possible only in the B5G or 6G. The effective utilization of the spectrum is done by multiple access techniques which facilitate the spectrum to accommodate a large number of users. The 5G has different new technologies to support the massive user demand and high-speed data rate. The non-orthogonal multiple access scheme (NOMA) is considered for the B5G or 6G. The NOMA offers a massive number of user connectivity in contrast to the OMA which is an orthogonal multiple access scheme. The performance evaluation of the SCMA is investigated and recent advancement in the field of NOMA is discussed in this paper. The BER performance of Capacity-based codebook design and codebook design based on lattice constellation is evaluated on the two different channels i.e AWGN and Rayleigh fading channel. The behavior of capacity-based codebook design is better than lattice-based codebook design. The performance of both codebook designs surpasses AWGN in contrast to the Rayleigh fading channel by the multipath available in the Rayleigh Fading channel.
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稀疏码多址(SCMA)码本设计的高性能实现研究
摘要-近年来,移动设备、物联网设备及其应用的数量日益增加,未来几年还将进一步增加。这些应用程序和设备需要大连接、高吞吐量和低延迟,这些只有在B5G或6G中才能实现。频谱的有效利用是通过多址技术实现的,多址技术使频谱能够容纳大量用户。5G有不同的新技术来支持庞大的用户需求和高速数据速率。对于B5G或6G,考虑采用非正交多址方案(NOMA)。与OMA相比,NOMA提供了大量的用户连接,OMA是一种正交多址方案。本文对SCMA的性能评价进行了研究,并对NOMA领域的最新进展进行了讨论。在AWGN信道和瑞利衰落信道两种不同信道条件下,对基于容量的码本设计和基于晶格星座的码本设计的误码率性能进行了评价。基于容量的码本设计优于基于格的码本设计。与瑞利衰落信道相比,这两种码本设计的性能都超过了AWGN,因为瑞利衰落信道中有可用的多径。
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