Project Details
Description
This project addresses the need to enhance wireless communication performance, driven by the increasing demand for greater bandwidth, speed, and reliability, which is crucial for the transition to 5G. A key technology in this evolution is Massive MIMO, which, despite its potential, still presents significant limitations, particularly in the reception stage. The methodology focuses on rigorous state-of-the-art research, analyzing scientific articles from international journals and specialized databases such as ScienceDirect and IEEE Xplorer. The collected information will be used to derive mathematical models that will subsequently be implemented and evaluated using simulation software. The final outcome of this investigation and the simulations will be the production of a scientific paper detailing the comparison of reception techniques, offering a clear view of potential solutions to optimize Massive MIMO performance in next-generation systems.<br/><br/><b>Goal</b>: <br/>The main objective is to conduct a comprehensive comparison between the various reception techniques applicable to Massive Multiple-Input Multiple-Output (Massive MIMO) systems. This research aims to address the current limitations of these technologies in the context of the evolution towards 5G communications.<br/><br/><b>Research lines</b>: <br/>Telematics applied to process automation
| Status | Finished |
|---|---|
| Effective start/end date | 4/01/16 → 31/12/16 |
Keywords
- Massive MIMO
- Signal Reception
- Wireless Communications
- 5G Technology
- Mathematical Models
- Simulation
- State of the Art
- Bandwidth
CACES Knowledge Areas
- 8417A Telecommunications
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