To provide a high-quality 5G user experience, prospective transport networks need to achieve substantial advancements regarding area traffic capacity, peak data rates, synchronization, latency, and automation. This places considerable demands on the 5G FWA transport network. To meet these stringent requirements, various functional splits have been recommended to accommodate different deployment settings across sites. Consequently, the 5G FWA transport network can leverage the radio functional split options designed for mobile networks. This chapter explores the transport network architectures and their evolution.

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Transport Network Architectures and Requirements

  • Isiaka Alimi

摘要

To provide a high-quality 5G user experience, prospective transport networks need to achieve substantial advancements regarding area traffic capacity, peak data rates, synchronization, latency, and automation. This places considerable demands on the 5G FWA transport network. To meet these stringent requirements, various functional splits have been recommended to accommodate different deployment settings across sites. Consequently, the 5G FWA transport network can leverage the radio functional split options designed for mobile networks. This chapter explores the transport network architectures and their evolution.