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(CityRegions.Com, October 04, 2017 ) vRAN (Virtualized Radio Access Network) refers to a RAN (Radio Access Network) implementation where some or all baseband functions are separated from the remote radio unit and run as VNFs (Virtualized Network Functions) on commodity hardware. This approach results in multiple operational benefits including but not limited to TCO (Total Cost of Ownership) reduction, performance gains and scalability. In addition, vRAN enables mobile operators to future-proof their networks for 5G upgrades.
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The vRAN market is presently at a nascent stage with most investments focused on virtualized small cells for targeted greenfield deployments and pilot engagements for macrocell coverage. However, as mobile operators realize the benefits of RAN virtualization, the market is expected to grow at a CAGR of approximately 125% over the next three year period. By the end of 2020, SNS Research estimates that vRAN deployments will account for a market worth $2.6 Billion.
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The “vRAN (Virtualized Radio Access Network) Ecosystem: 2017 – 2030 – Opportunities, Challenges, Strategies & Forecasts” report presents an in-depth assessment of the vRAN ecosystem including enabling technologies, key trends, market drivers, challenges, standardization, collaborative initiatives, regulatory landscape, deployment models, operator case studies, opportunities, future roadmap, value chain, ecosystem player profiles and strategies. The report also presents forecasts for vRAN investments from 2017 till 2030. The forecasts cover multiple submarkets and 6 regions. The report comes with an associated Excel datasheet suite covering quantitative data from all numeric forecasts presented in the report.
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Some Points from List of Tables:
Figure 1: C-RAN Architecture Figure 2: vRAN Architecture Figure 3: Key Remote Radio Unit & vBBU Functions Figure 4: VM vs. Container Virtualization Figure 5: CPRI Protocol Layers Figure 6: Baseband Functional Split Options for vRAN Figure 7: Examples of Maximum Required Bitrate on a Fronthaul Link for Possible PHY-RF Split Figure 8: Performance Comparison of Baseband Functional Split Options for vRAN Figure 9: Annual Global Throughput of Mobile Network Data Traffic by Region: 2017 – 2030 (Exabytes) Figure 10: ETSI NFV Architecture Figure 11: M-CORD Focus Areas Figure 12: nFAPI Interfaces Figure 13: Distributed vRAN Deployment Model Figure 14: Cloud RAN Deployment Model Figure 15: Virtualized Small Cell Deployment Model Figure 16: China Mobile’s Cloud RAN Vision Figure 17: NTT DoCoMo’s Advanced C-RAN Architecture Figure 18: SK Telecom’s SDRAN (Software Defined RAN) Architecture Figure 19: SoftBank’s Virtualized Small Cell Trial Figure 20: vRAN Industry Roadmap Figure 21: vRAN Value Chain Figure 22: Global vRAN Revenue: 2017 – 2030 ($ Million) Figure 23: Global vRAN Revenue by Deployment Model: 2017 – 2030 ($ Million) Figure 24: Global Virtualized Small Cell RAN Revenue: 2017 – 2030 ($ Million) Figure 25: Global Virtualized Macrocell RAN Revenue: 2017 – 2030 ($ Million) Figure 26: Global vRAN Revenue by Air Interface Technology: 2017 – 2030 ($ Million) Figure 27: Global Virtualized LTE & 3G RAN Revenue: 2017 – 2030 ($ Million) Figure 28: Global Virtualized 5G NR RAN Revenue: 2017 – 2030 ($ Million) Figure 29: Global vRAN Revenue by Submarket: 2016 – 2030 ($ Million) Figure 30: Global vRAN Radio Unit Shipments: 2017 – 2030 (Thousands of Units) Figure 31: Global vRAN Radio Unit Shipment Revenue: 2017 – 2030 ($ Million) Figure 32: Global vRAN Radio Unit Shipments by Deployment Model: 2017 – 2030 (Units) Figure 33: Global vRAN Radio Unit Shipment Revenue by Deployment Model: 2017 – 2030 ($ Million) Figure 34: Global Virtualized Small Cell Radio Unit Shipments: 2017 – 2030 (Units) Figure 35: Global Virtualized Small Cell Radio Unit Shipment Revenue: 2017 – 2030 ($ Million)
The report covers the following topics: vRAN ecosystem Market drivers and barriers vRAN architecture and key functional elements Baseband functional splitting for vRAN implementation Fronthaul networking technologies and interface options Key trends including RAN slicing, RANaaS (RAN as a Service), neutral hosting and MEC (Mobile Edge Computing) TCO comparison between vRAN and conventional RAN architectures vRAN deployment models including Cloud RAN and virtualized small cells Mobile operator case studies Regulatory landscape, collaborative initiatives and standardization Industry roadmap and value chain Profiles and strategies of over 60 leading ecosystem players including vRAN solution providers Strategic recommendations for ecosystem players including vRAN solution providers and mobile operators Market analysis and forecasts from 2017 till 2030
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Orbis Research
Hector Costello
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sales@orbisresearch.com
Source: EmailWire.Com
Source: EmailWire.com
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