Cellular architecture and key technologies for 5G wireless communication networks
Сотовая архитектура и ключевые технологии беспроводных сетей связи 5G
2014-02-01
SCID: 54.1/43mf5vaz
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5G wireless communication networkscellular architecturecognitive radio networksmassive MIMOvisible light communications
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Abstract (AI)
The fourth generation wireless communication systems have been deployed or are soon to be deployed in many countries. However, with an explosion of wireless mobile devices and services, there are still some challenges that cannot be accommodated even by 4G, such as the spectrum crisis and high energy consumption. Wireless system designers have been facing the continuously increasing demand for high data rates and mobility required by new wireless applications and therefore have started research on fifth generation wireless systems that are expected to be deployed beyond 2020. In this article, we propose a potential cellular architecture that separates indoor and outdoor scenarios, and discuss various promising technologies for 5G wireless communication systems, such as massive MIMO, energy-efficient communications, cognitive radio networks, and visible light communications. Future challenges facing these potential technologies are also discussed.
Key Findings
1
4G networks face unresolved spectrum scarcity and high energy consumption amid rapidly increasing wireless devices, services, data-rate, and mobility demands.
2
Massive MIMO, energy-efficient communications, cognitive radio networks, and visible light communications are identified as promising technologies for 5G systems.
3
The paper discusses future challenges associated with deploying and advancing these potential 5G technologies.
4
The paper proposes a potential 5G cellular architecture that separates indoor and outdoor communication scenarios.
5
The proposed 5G research direction targets systems expected to be deployed beyond 2020 to address limitations not accommodated by 4G.
Research Object
5G wireless communication systems (including proposed cellular architecture separating indoor and outdoor scenarios)
Research Subject
cellular architecture and enabling technologies for addressing spectrum scarcity, energy consumption, data-rate, and mobility demands
Publication Details
Publication Date
2014-02-01
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