An Assessment of Receiver Algorithms for Distributed Massive MIMO Systems: Investigating Design Solutions and Performance

Author:

Gashtasbi Ali1,Marques da Silva Mário2345ORCID,Dinis Rui134ORCID

Affiliation:

1. Faculty of Sciences and Technology, Universidade Nova, 2829-516 Caparica, Portugal

2. Department of Sciences and Technologies, Universidade Autónoma de Lisboa, 1169-023 Lisboa, Portugal

3. Autonoma TechLab, 1169-023 Lisboa, Portugal

4. Instituto de Telecomunicações, 1049-001 Lisboa, Portugal

5. Ci2—Centro de Investigação em Cidades Inteligentes, 2300-313 Tomar, Portugal

Abstract

This study investigates receiver design solutions for distributed Massive Multiple Input Multiple Output (D-m MIMO) systems, taking into account parameters such as number of access points as well as concerns related to channel estimates that use single-carrier frequency-domain equalization (SC-FDE). A significant contribution of this research is the integration of Low-Density Parity-Check (LDPC) codes to simplify coding complexity and enhance communication efficiency. The research examines different receiver designs, such as spatial antenna correlation and sophisticated channel estimation methods. The authors propose integrating LDPC codes into the receiver architecture to simplify computations and enhance error correction and decoding. Moreover, the paper examines performance evaluation measures and approaches, highlighting the trade-offs among complexity, spectral efficiency, and error performance. The comparative analysis indicates the benefits, in terms of performance, of incorporating LDPC codes and improving system throughput and dependability. We examine four distinct receiver algorithms: zero-forcing (ZF), minimum mean square error (MMSE), maximum ratio combining (MRC), and equal gain combining (EGC). The study shows that MRC and EGC receivers work well in D-m MIMO because they make the receiver system less computationally demanding.

Funder

FCT

Publisher

MDPI AG

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