Grant-Free Random Access Enhanced by Massive MIMO and Non-Orthogonal Preambles

Author:

Jiang Hao123ORCID,Chen Hongming4ORCID,Hu Hongming3,Ding Jie5ORCID

Affiliation:

1. School of Electronic and Information Engineering, South China University of Technology, Guangzhou 510640, China

2. Guangzhou Digital Technology Group Co., Ltd., Guangzhou 510656, China

3. Guangzhou Haige Communications Group Incorporated Company, Guangzhou 510663, China

4. School of Information Engineering, Zhejiang Ocean University, Zhoushan 316022, China

5. School of Electronic Information and Communications, Huazhong University of Science and Technology, Wuhan 430074, China

Abstract

Massive multiple input multiple output (MIMO) enabled grant-free random access (mGFRA) stands out as a promising random access (RA) solution, thus effectively addressing the need for massive access in massive machine-type communications (mMTCs) while ensuring high spectral efficiency and minimizing signaling overhead. However, the bottleneck of mGFRA is mainly dominated by the orthogonal preamble collisions, since the orthogonal preamble pool is small and of a fixed-sized. In this paper, we explore the potential of non-orthogonal preambles to overcome limitations and enhance the success probability of mGFRA without extending the length of the preamble. Given the RA procedure of mGFRA, we analyze the factors influencing the success rate of mGFRA with non-orthogonal preamble and propose to use two types of sequences, namely Gold sequence and Gaussian distribution sequence, as the preambles for mGFRA. Simulation results demonstrate the effectiveness of these two types pf non-orthogonal preambles in improving the success probability of mGFRA. Moreover, the system parameters’ impact on the performance of mGFRA with non-orthogonal preambles is examined and deliberated.

Funder

National Natural Science Foundation of China

Publisher

MDPI AG

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