Standalone and Non-Standalone Beam Management for 3GPP NR at mmWaves
arXiv:1805.04268 · doi:10.1109/MCOM.2019.1800384
Abstract
The next generation of cellular networks will exploit mmWave frequencies to dramatically increase the network capacity. The communication at such high frequencies, however, requires directionality to compensate the increase in propagation loss. Users and base stations need to align their beams during both initial access and data transmissions, to ensure the maximum gain is reached. The accuracy of the beam selection, and the delay in updating the beam pair or performing initial access, impact the end-to-end performance and the quality of service. In this paper we will present the beam management procedures that 3GPP has included in the NR specifications, focusing on the different operations that can be performed in Standalone (SA) and in Non-Standalone (NSA) deployments. We will also provide a performance comparison among different schemes, along with design insights on the most important parameters related to beam management frameworks.
7 pages, 5 figures, 1 table. Please cite it as M. Giordani, M. Polese, A. Roy, D. Castor and M. Zorzi, "Standalone and Non-Standalone Beam Management for 3GPP NR at mmWaves," in IEEE Communications Magazine, vol. 57, no. 4, pp. 123-129, April 2019
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Cited by in corpus (4)
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- Beam Management in Ultra-dense mmWave Network via Federated Reinforcement Learning: An Intelligent and Secure Approach
- Toward Trusted and Swift UAV Communication: ISAC-Enabled Dual Identity Mapping
- Fastening the Initial Access in 5G NR Sidelink for 6G V2X Networks