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Tunable, concurrent multiband, single chain radio architecture for low energy 5G-RANs
- Source :
- WiOpt
- Publication Year :
- 2017
- Publisher :
- IEEE, 2017.
-
Abstract
- This invited paper considers a key next step in the design of radio architectures aimed at supporting low energy consumption in 5G heterogeneous radio access networks. State-of-the-art mobile radios usually require one RF transceiver per standard, each working separately at any given time. Software defined radios, while spanning a wide range of standards and frequency bands, also work separately at any specific time. In 5G radio access networks, where continuous, multiband connectivity is envisaged, this conventional radio architecture results in high network power consumption. In this paper, we propose the novel concept of a concurrent multiband frequency-agile radio (CM-FARAD) architecture, which simultaneously supports multiple standards and frequency bands using a single, tunable transceiver. We discuss the subsystem radio design approaches for enabling the CM-FARAD architecture, including antennas, power amplifiers, low noise amplifiers and analogue to digital converters. A working prototype of a dual-band CM-FARAD test-bed is also presented together with measured salient performance characteristics.
- Subjects :
- Computer science
business.industry
ComputerSystemsOrganization_COMPUTER-COMMUNICATIONNETWORKS
020208 electrical & electronic engineering
020206 networking & telecommunications
02 engineering and technology
Software-defined radio
Remote radio head
Radio spectrum
Cognitive radio
Hardware_GENERAL
Radio-frequency engineering
0202 electrical engineering, electronic engineering, information engineering
Electronic engineering
Types of radio emissions
Radio frequency
Transceiver
Telecommunications
business
Subjects
Details
- Database :
- OpenAIRE
- Journal :
- 2017 15th International Symposium on Modeling and Optimization in Mobile, Ad Hoc, and Wireless Networks (WiOpt)
- Accession number :
- edsair.doi...........023ccca0ba2cc7588a1176e6cd2ceca9
- Full Text :
- https://doi.org/10.23919/wiopt.2017.7959932