Showing posts with label C-RAN. Show all posts
Showing posts with label C-RAN. Show all posts

Tuesday, 19 June 2018

The C-RAN (Centralized Radio Access Network) : Market Demands, Insights, Research and Forecast 2018-2030

ResearchMoz presents professional and in-depth study of "The C-RAN (Centralized Radio Access Network) Ecosystem: 2016 - 2030 - Opportunities, Challenges, Strategies & Forecasts".

Centralized RAN or C-RAN is an architectural shift in RAN (Radio Access Network) design, where the bulk of baseband processing is centralized and aggregated for a large number of distributed radio nodes. In comparison to standalone clusters of base stations, C-RAN provides significant performance and economic benefits such as baseband pooling, enhanced coordination between cells, virtualization, network extensibility, smaller deployment footprint and reduced power consumption.

Get PDF for more Professional and Technical insights @ https://www.researchmoz.us/enquiry.php?type=S&repid=527472

Although Japan and South Korea continue to spearhead commercial C-RAN investments, interest is also growing in other parts of the world. Mobile operators such as China Mobile, Orange, Verizon and Sprint are already investing in the technology.

SNS Research estimates that global investments on C-RAN architecture networks will reach over $7 Billion by the end of 2016. The market is further expected to grow at a CAGR of nearly 20% between 2016 and 2020. These investments will include spending on RRHs (Remote Radio Heads), BBUs (Baseband Units) and fronthaul transport networking gear.

The “C-RAN (Centralized Radio Access Network) Ecosystem: 20162030 – Opportunities, Challenges, Strategies & Forecasts” report presents an in-depth assessment of the C-RAN ecosystem including enabling technologies, key trends, market drivers, challenges, standardization, regulatory landscape, deployment models,  operator case studies, opportunities, future roadmap, value chain, ecosystem player profiles and strategies. The report also presents forecasts for C-RAN infrastructure investments from 2016 till 2030. The forecasts cover 3 individual submarkets and 6 regions.

The report comes with an associated Excel datasheet suite covering quantitative data from all numeric forecasts presented in the report.

The report covers the following topics:

    C-RAN ecosystem
    Market drivers and barriers
    Key architectural components (RRH, BBU and fronthaul)
    Competing RAN architectures including traditional macrocell base stations, small cells and DAS (Distributed Antenna Systems)
    Key trends including baseband functional splitting, enterprise C-RAN, Cloud RAN, MEC (Mobile Edge Computing) and RANaaS (RAN as a Service)
    Fronthaul networking technologies and interface options
    C-RAN deployment models and mobile operator case studies
    Regulatory landscape and standardization
    Industry roadmap and value chain
    Profiles and strategies of over 120 leading ecosystem players including enabling technology providers, radio equipment suppliers, BBU vendors, fronthaul networking vendors and mobile operators
    Strategic recommendations for ecosystem players including C-RAN solution providers and mobile operators
    Market analysis and forecasts from 2016 till 2030

View Complete TOC with tables & Figures @ https://www.researchmoz.us/the-cran-centralized-radio-access-network-ecosystem-2016-2030-opportunities-challenges-strategies-forecasts-report.html/toc

Historical Revenue & Forecast Segmentation


Market forecasts are provided for each of the following submarkets and their subcategories:

Air Interface Technology

    3G & LTE
    5G

Submarkets

    RRH (Remote Radio Head)
    BBU (Baseband Unit)
    Fronthaul

RRH Deployment Model

    Indoor
    Outdoor

Fronthaul Technology

    Dedicated Fiber
    WDM (Wavelength Division Multiplexing)
    OTN (Optical Transport Network)
    PON (Passive Optical Network)
    Ethernet
    Microwave
    Millimeter Wave

Regional Markets

    Asia Pacific
    Eastern Europe
    Middle East & Africa
    Latin & Central America
    North America
    Western Europe

The report provides answers to the following key questions:

    How big is the C-RAN opportunity?
    What trends, challenges and barriers are influencing its growth?
    How is the ecosystem evolving by segment and region?
    What will the market size be in 2020 and at what rate will it grow?
    Which submarkets will see the highest percentage of growth?
    How can C-RAN facilitate the management of interference and LTE-Advanced features such as CoMP (Coordinated Multi-Point)?
    What are the prospects of wireless fronthaul technologies?
    Is Ethernet a feasible solution for fronthaul networking?
    How big is the market for virtualized Cloud RAN networks?
    Who are the key market players and what are their strategies?
    What strategies should C-RAN solution providers and mobile operators adopt to remain competitive?

Key Findings

    Expected to surpass $7 Billion in global spending by the end of 2016, C-RAN is increasingly becoming the preferred approach to deploy future mobile networks for both macro and small cell coverage. The market is further expected to grow at a CAGR of nearly 20% between 2016 and 2020.
    To alleviate stringent fronthaul requirements, an increasing number of C-RAN solutions are now utilizing RRHs with baseband capabilities, allowing some intelligence (primarily Layer 1 and Layer 2) to be distributed among RRHs, with Layer 3 functionality residing at centralized BBUs.
    The ongoing 5G race is expected to significantly boost C-RAN investments over the coming years. SNS
    Research estimates that over $1 Billion of all C-RAN architecture network investments will be directed towards 5G networks by the end of 2020.
    At present, most virtualized Cloud RAN investments are limited to trials and demonstrations. However, by the end of 2020, we expect that virtualized BBUs will account for over 6% of all C-RAN BBU investments.

Make An Enquiry About TOC with tables & Figures @ https://www.researchmoz.us/enquiry.php?type=E&repid=527472

List of Companies Mentioned

    3GPP (3rd Generation Partnership Project)
    6WIND
    Absolute Analysis
    Accelink Technologies
    ADLINK Technology
    ADTRAN
    ADVA Optical Networking
    Advantech
    Airspan Networks
    Airvana
    Alcatel-Lucent
    Altera Corporation
    Altiostar Networks
    Amarisoft
    América Móvil Group
    Anite
    Anritsu Corporation
    Aquantia
    ARM Holdings
    Artemis Networks
    Artesyn Embedded Technologies
    Artiza Networks
    ASOCS
    ASTRI (Hong Kong Applied Science and Technology Research Institute)
    Avago Technologies
    Aviat Networks
    Axxcelera Broadband Wireless (Moseley Associates)
    BLiNQ Networks
    Blu Wireless Technology
    BluWan
    BridgeWave Communications
    Broadcom Corporation
    Cambium Networks
    Cavium
    CBNL (Cambridge Broadband Networks Ltd.)
    CCS (Cambridge Communication Systems)
    Ceragon
    China Mobile
    China Telecom
    Ciena Corporation
    Cisco Systems
    Cobham Wireless
    Coherent Logix
    Comcores ApS
    CommAgility
    CommScope
    Connectem
    ConteXtream
    Coriant
    Corning
    Cyan
    Dali Wireless
    Datang Mobile
    Dish Network
    DragonWave
    eASIC Corporation
    E-Band Communications (Moseley Associates)
    EBlink
    Eden Rock Communications
    Eoptolink Technology
    Ericsson
    ETSI (European Telecommunications Standards Institute)
    Exalt Communications
    EXFO
    Extreme Networks
    EZchip Semiconductor
    FastBack Networks
    Finisar Corporation
    Freescale Semiconductor
    Fujitsu
    GigaLight (Shenzhen Gigalight Technology Company)
    GlobalFoundaries
    HFR
    HG Genuine
    Hisense (Hisense Broadband Multimedia Technology)
    Hitachi
    Huawei
    IDT (Integrated Device Technology)
    IEEE (Institute of Electrical and Electronics Engineers)
    IMEC International
    Infinera
    InnoLight Technology Corporation
    Intel Corporation
    InterDigital
    Intracom Telecom
    ITU (International Telecommunications Union)
    Ixia
    JMA Wireless
    JRC (Japan Radio Company)
    Kathrein-Werke KG
    Keysight Technologies
    Kisan Telecom
    KMW
    KT Corporation
    Lattice Semiconductor
    LG Uplus
    LightPointe Communications
    Lumentum
    Macom (M/A-COM Technology Solutions)
    MAX4G
    MEF (Metro Ethernet Forum)
    Mellanox Technologies
    Microsemi Corporation
    Microwave Networks
    MIMOon
    MIMOtech
    Mitsubishi Electric Corporation
    Mobiveil
    Molex
    MTI Mobile
    NEC Corporation
    NetScout Systems
    NGMN (Next Generation Mobile Networks) Alliance
    Nokia Networks
    NTT DoCoMo
    Nutaq
    NXP Semiconductors
    Octasic
    OE Solutions
    Orange
    Overture Networks
    Parallel Wireless
    PMC-Sierra
    Potevio (China Potevio Company)
    Proxim Wireless Corporation
    QEOS
    Qualcomm
    Qwilt
    Radisys Corporation
    RADWIN
    Rearden
    Red Hat
    Saguna Networks
    SAI Technology
    Samji Electronics Company
    Samsung Electronics
    Sarokal Test Systems
    Siklu
    SK Telecom
    Small Cell Forum
    SoftBank Mobile
    SOLiD (SOLiD Technologies)
    Source Photonics
    SpiderCloud Wireless
    Sprint
    Sub10 Systems
    Sumitomo Electric Industries
    Sunnada (Fujian Sunnada Communication Company)
    Sunwave Communications
    Tarana Wireless
    TE Connectivity
    TEKTELIC Communications
    Telco Systems
    Telecom Italia
    Telefónica
    TI (Texas Instruments)
    Transmode
    UN (United Nations)
    Verizon Wireless
    Viavi Solutions
    Vodafone Group
    Vubiq Networks
    Wind River
    Xelic
    Xilinx
    ZTE

Countires Covered

    Afghanistan
    Albania
    Algeria
    Andorra
    Angola
    Anguilla
    Antigua & Barbuda
    Argentina
    Armenia
    Aruba
    Australia
    Austria
    Azerbaijan
    Bahamas
    Bahrain
    Bangladesh
    Barbados
    Belarus
    Belgium
    Belize
    Benin
    Bermuda
    Bhutan
    Bolivia
    Bosnia Herzegovina
    Botswana
    Brazil
    British Virgin Islands
    Brunei
    Bulgaria
    Burkina Faso
    Burundi
    Cambodia
    Cameroon
    Canada
    Cape Verde
    Cayman Islands
    Central African Republic
    Chad
    Chile
    China
    Cocos Islands
    Colombia
    Comoros Islands
    Congo
    Cook Islands
    Costa Rica
    Côte d'Ivoire
    Croatia
    Cuba
    Cyprus
    Czech Republic
    Democratic Rep of Congo (ex-Zaire)
    Denmark
    Djibouti
    Dominica
    Dominican Republic
    East Timor
    Ecuador
    Egypt
    El Salvador
    Equatorial Guinea
    Eritrea
    Estonia
    Ethiopia
    Faroe Islands
    Federated States of Micronesia
    Fiji
    Finland
    France
    French Guiana
    French Polynesia (ex-Tahiti)
    French West Indies
    Gabon
    Gambia
    Georgia
    Germany
    Ghana
    Gibraltar
    Greece
    Greenland
    Grenada
    Guam
    Guatemala
    Guernsey
    Guinea Republic
    Guinea-Bissau
    Guyana
    Haiti
    Honduras
    Hong Kong
    Hungary
    Iceland
    India
    Indonesia
    Iran
    Iraq
    Ireland
    Isle of Man
    Israel
    Italy
    Jamaica
    Japan
    Jersey
    Jordan
    Kazakhstan
    Kenya
    Kirghizstan
    Kiribati
    Korea
    Kosovo
    Kuwait
    Laos
    Latvia
    Lebanon
    Lesotho
    Liberia
    Libya
    Liechtenstein
    Lithuania
    Luxembourg
    Macau
    Macedonia
    Madagascar
    Malawi
    Malaysia
    Maldives
    Mali
    Malta
    Marshall Islands
    Mauritania
    Mauritius
    Mayotte
    Mexico
    Moldova
    Monaco
    Mongolia
    Montenegro
    Montserrat
    Morocco
    Mozambique
    Myanmar
    Namibia
    Nepal
    Netherlands
    Netherlands Antilles
    New Caledonia
    New Zealand
    Nicaragua
    Niger
    Nigeria
    Niue
    North Korea
    Northern Marianas
    Norway
    Oman
    Pakistan
    Palau
    Palestine
    Panama
    Papua New Guinea
    Paraguay
    Peru
    Philippines
    Poland
    Portugal
    Puerto Rico
    Qatar
    Réunion
    Romania
    Russia
    Rwanda
    Samoa
    Samoa (American)
    Sao Tomé & Principe
    Saudi Arabia
    Senegal
    Serbia
    Seychelles
    Sierra Leone
    Singapore
    Slovak Republic
    Slovenia
    Solomon Islands
    Somalia
    South Africa
    Spain
    Sri Lanka
    St Kitts & Nevis
    St Lucia
    St Vincent & The Grenadines
    Sudan
    Suriname
    Swaziland
    Sweden
    Switzerland
    Syria
    Tajikistan
    Taiwan
    Tanzania
    Thailand
    Togo
    Tonga
    Trinidad & Tobago
    Tunisia
    Turkey
    Turkmenistan
    Turks & Caicos Islands
    UAE
    Uganda
    UK
    Ukraine
    Uruguay

Browse Report @ https://www.researchmoz.us/the-cran-centralized-radio-access-network-ecosystem-2016-2030-opportunities-challenges-strategies-forecasts-report.html

    US Virgin Islands
    USA
    Uzbekistan
    Vanuatu
    Venezuela
    Vietnam
    Yemen
    Zambia
    Zimbabwe

For More Information Kindly Contact:

ResearchMoz
Mr. Nachiket Ghumare,
90 State Street, Albany NY, United States - 12207
Tel: +1-518-621-2074
USA-Canada Toll Free: 866-997-4948
Email: sales@researchmoz.us
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Thursday, 8 February 2018

Latest Development of Cloud Radio Access Network (C-RAN) Market in Global Industry 2018-2025

ResearchMoz presents professional and in-depth study of "Cloud Radio Access Network (C-RAN) Market -Global Industry Analysis, Size, Share, Growth, Trends and Forecast, 2017 – 2025".

Centralized-RAN or cloud radio access network (C-RAN) is one of the evolving technology in wireless industry. C-RAN architecture is improved version of traditional distributed base station system which is supporting 2G, 3G, 4G and other wireless connections.

Get PDF for more Professional and Technical insights @ https://www.researchmoz.us/enquiry.php?type=S&repid=1445825

C-RAN uses coarse or dense wavelength division multiplexing (CWDM/ DWDM) technology and common public radio interface (CPRI) standard to allow transmission of baseband signal over large distance obtaining scale centralized station deployment. It applies technology which are existing in data center network to allow high reliability, low latency high bandwidth and low cost network in the baseband unit (BBU) pool. In C-RAN, radio access network (RAN) is the tool which is connected to cellular antennas to processes the signal and to send them to the central network. As the demand for connectivity has increased, telecom operators need to minimize the cost of their equipment. C-RAN reduces the operating cost by providing the flexibility of allocating resources at different locations. It is achieved by keeping the processing power away from the antennas and nearer to the core as a centralized pool of resources. This allows the utilization of software define networking (SDN) and network function virtualization (NFV) by pooling network resources as needed. If traffic increases, there is increased access to processing power. If traffic recedes, the network resource utilization decreases concurrently. This concept of network elasticity allows operators for network sharing. This is a major advantage of using C-RAN technology.

Deployment of cloud-RAN architectures allow mobile operators to meet increasing requirements concerning data rates, latency and traffic volume through the use of network functions virtualization (NFV) techniques. These factors are also achieved through data center processing capabilities in networks, which provides resource pooling, layer interworking, scalability and spectral effectiveness. It utilizes open platforms and real-time virtualization technology existing in cloud computing to accomplish support of multi-vendor, dynamic shared resource allocation and multi-technology environments. Advantages of implementing C-RAN offers the ability to share resources, reuse infrastructure, support multiple technologies and simplify network operations. It helps in reducing energy consumption, lower operating expenditures (opex) and lower capital expenditures). Moreover, the network becomes more varied and self-organizing. Once implemented, the C-RAN will provide benefits such as easier and faster deployment of network and enhanced network flexibility. Thus, requirements to operate networks at low cost and to obtain high performance are expected to drive the market during the forecast period.

Make An Enquiry About TOC with tables & Figures @ https://www.researchmoz.us/enquiry.php?type=E&repid=1445825

C-RAN implementation requires small latencies between the RRH and BBU pool or the front-haul.  These low latencies usually require fiber links at sites which is major challenge for few operators. It also requires software to interconnect all of the BBUs in the server and manage the complex functions in the virtual cloud. Government policies and standards related to security are expected to be the major restraints for the C-RAN market as different nations have different regulatory policies. These varying regulatory policies, along with fluctuating macroeconomic factors are expected to restrain the market.  A major challenge which lies in implementation of C-RAN network is security in terms of user privacy and trusted parties. As resources are shared between BBUs, breaching user privacy and accessing secured data is major threat in distributed architecture.

Market for cloud radio access network can be segmented on the basis of type, component, deployment venue and geography. On the basis of type, market is segmented into cloud RAN and centralized RAN. Centralized RAN carriers take baseband units off the cell sites and put them in a central location in the network. While Cloud RAN refers to the virtualization of the setup, which would allow servers to manage 30 to 40 cell sites each. On the basis of component market is segmented into solutions, services, consulting, planning and implementation, maintenance and support and training. On the basis of deployment venue market is segmented into large public venues, outdoor urban areas, high-density urban areas, suburban and rural areas. On the basis of geography, the market is segmented into North America, Asia Pacific (APAC), South America, Middle East & Africa (MEA) and Europe.

Key players for cloud radio access network (C-RAN) market are Altiostar, Asocs Ltd., Cisco Systems, Inc., Ericsson AB, Fujitsu, Huawei Technologies Co., Ltd., Intel Corporation, Mavenir Systems, NEC Corporation, Nokia Corporation, Samsung Electronics Co Ltd and ZTE Corporation.

The report offers a comprehensive evaluation of the market. It does so via in-depth qualitative insights, historical data, and verifiable projections about market size. The projections featured in the report have been derived using proven research methodologies and assumptions. By doing so, the research report serves as a repository of analysis and information for every facet of the market, including but not limited to: Regional markets, technology, types, and applications.

The study is a source of reliable data on:

    Market segments and sub-segments
    Market trends and dynamics
    Supply and demand
    Market size
    Current trends/opportunities/challenges
    Competitive landscape
    Technological breakthroughs
    Value chain and stakeholder analysis

The regional analysis covers:

    North America (U.S. and Canada)
    Latin America (Mexico, Brazil, Peru, Chile, and others)
    Western Europe (Germany, U.K., France, Spain, Italy, Nordic countries, Belgium, Netherlands, and Luxembourg)
    Eastern Europe (Poland and Russia)
    Asia Pacific (China, India, Japan, ASEAN, Australia, and New Zealand)
    Middle East and Africa (GCC, Southern Africa, and North Africa)

The report has been compiled through extensive primary research (through interviews, surveys, and observations of seasoned analysts) and secondary research (which entails reputable paid sources, trade journals, and industry body databases). The report also features a complete qualitative and quantitative assessment by analyzing data gathered from industry analysts and market participants across key points in the industry’s value chain.

A separate analysis of prevailing trends in the parent market, macro- and micro-economic indicators, and regulations and mandates is included under the purview of the study. By doing so, the report projects the attractiveness of each major segment over the forecast period.

Browse Report @ https://www.researchmoz.us/cloud-radio-access-network-cran-market-global-industry-analysis-size-share-growth-trends-and-forecast-2017-2025-report.html

Highlights of the report:

    A complete backdrop analysis, which includes an assessment of the parent market
    Important changes in market dynamics
    Market segmentation up to the second or third level
    Historical, current, and projected size of the market from the standpoint of both value and volume
    Reporting and evaluation of recent industry developments
    Market shares and strategies of key players
    Emerging niche segments and regional markets
    An objective assessment of the trajectory of the market
    Recommendations to companies for strengthening their foothold in the market

For More Information Kindly Contact:

ResearchMoz
Mr. Nachiket Ghumare,
90 State Street, Albany NY, United States - 12207
Tel: +1-518-621-2074
USA-Canada Toll Free: 866-997-4948
Email: sales@researchmoz.us
Follow us on LinkedIn @ http://bit.ly/1TBmnVG
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Tuesday, 6 February 2018

Trend of The C-RAN (Centralized Radio Access Network) Ecosystem : Market Analysis, Growth and Status 2018-2030

ResearchMoz presents professional and in-depth study of "The C-RAN (Centralized Radio Access Network) Ecosystem: 2016 - 2030 - Opportunities, Challenges, Strategies & Forecasts".

Centralized RAN or C-RAN is an architectural shift in RAN (Radio Access Network) design, where the bulk of baseband processing is centralized and aggregated for a large number of distributed radio nodes.

Get PDF for more Professional and Technical insights @ https://www.researchmoz.us/enquiry.php?type=S&repid=527472

In comparison to standalone clusters of base stations, C-RAN provides significant performance and economic benefits such as baseband pooling, enhanced coordination between cells, virtualization, network extensibility, smaller deployment footprint and reduced power consumption.

Although Japan and South Korea continue to spearhead commercial C-RAN investments, interest is also growing in other parts of the world. Mobile operators such as China Mobile, Orange, Verizon and Sprint are already investing in the technology.

SNS Research estimates that global investments on C-RAN architecture networks will reach over $7 Billion by the end of 2016. The market is further expected to grow at a CAGR of nearly 20% between 2016 and 2020. These investments will include spending on RRHs (Remote Radio Heads), BBUs (Baseband Units) and fronthaul transport networking gear.

The “C-RAN (Centralized Radio Access Network) Ecosystem: 20162030 – Opportunities, Challenges, Strategies & Forecasts” report presents an in-depth assessment of the C-RAN ecosystem including enabling technologies, key trends, market drivers, challenges, standardization, regulatory landscape, deployment models,  operator case studies, opportunities, future roadmap, value chain, ecosystem player profiles and strategies. The report also presents forecasts for C-RAN infrastructure investments from 2016 till 2030. The forecasts cover 3 individual submarkets and 6 regions.

View Complete TOC with tables & Figures @ https://www.researchmoz.us/the-cran-centralized-radio-access-network-ecosystem-2016-2030-opportunities-challenges-strategies-forecasts-report.html/toc

The report comes with an associated Excel datasheet suite covering quantitative data from all numeric forecasts presented in the report.

The report covers the following topics:

    C-RAN ecosystem
    Market drivers and barriers
    Key architectural components (RRH, BBU and fronthaul)
    Competing RAN architectures including traditional macrocell base stations, small cells and DAS (Distributed Antenna Systems)
    Key trends including baseband functional splitting, enterprise C-RAN, Cloud RAN, MEC (Mobile Edge Computing) and RANaaS (RAN as a Service)
    Fronthaul networking technologies and interface options
    C-RAN deployment models and mobile operator case studies
    Regulatory landscape and standardization
    Industry roadmap and value chain
    Profiles and strategies of over 120 leading ecosystem players including enabling technology providers, radio equipment suppliers, BBU vendors, fronthaul networking vendors and mobile operators
    Strategic recommendations for ecosystem players including C-RAN solution providers and mobile operators
    Market analysis and forecasts from 2016 till 2030

Historical Revenue & Forecast Segmentation


Market forecasts are provided for each of the following submarkets and their subcategories:

Air Interface Technology

    3G & LTE
    5G

Browse Report @ https://www.researchmoz.us/the-cran-centralized-radio-access-network-ecosystem-2016-2030-opportunities-challenges-strategies-forecasts-report.html

Submarkets

    RRH (Remote Radio Head)
    BBU (Baseband Unit)
    Fronthaul

For More Information Kindly Contact:

ResearchMoz
Mr. Nachiket Ghumare,
90 State Street, Albany NY, United States - 12207
Tel: +1-518-621-2074
USA-Canada Toll Free: 866-997-4948
Email: sales@researchmoz.us
Follow us on LinkedIn @ http://bit.ly/1TBmnVG
Follow me on : https://marketinfo247.wordpress.com/

Tuesday, 17 October 2017

Innovative Change Of The C-RAN (Centralized Radio Access Network) Ecosystem : Opportunities, Challenges, Strategies & Forecasts 2017-2030

ResearchMoz presents professional and in-depth study of "The C-RAN (Centralized Radio Access Network) Ecosystem: 2017 - 2030 - Opportunities, Challenges, Strategies & Forecasts".

Centralized RAN or C-RAN is an architectural shift in RAN (Radio Access Network) design, where the bulk of baseband processing is centralized and aggregated for a large number of distributed radio nodes. In comparison to standalone clusters of base stations, C-RAN provides significant performance and economic benefits such as baseband pooling, enhanced coordination between cells, virtualization, network extensibility, smaller deployment footprint and reduced power consumption.

Get PDF for more Professional and Technical insights @ https://www.researchmoz.us/enquiry.php?type=S&repid=1237586

Initially popularized by Japanese and South Korean mobile operators, C-RAN technology is beginning to gain momentum worldwide with major tier 1 operators –  including Verizon Communications, AT&T, Sprint, China Mobile, Vodafone, TIM (Telecom Italia Mobile), Orange and Telefónica –  seeking to leverage the benefits of centralized baseband processing.

SNS Research estimates that global investments in C-RAN architecture networks will reach nearly $9 Billion by the end of 2017. The market is further expected to grow at a CAGR of approximately 24% between 2017 and 2020. These investments will include spending on RRHs (Remote Radio Heads), BBUs (Baseband Units) and fronthaul transport network equipment.

The “C-RAN (Centralized Radio Access Network) Ecosystem: 2017 – 2030 – Opportunities, Challenges, Strategies & Forecasts” report presents an in-depth assessment of the C-RAN ecosystem including enabling technologies, key trends, market drivers, challenges, standardization, regulatory landscape, deployment models, operator case studies, opportunities, future roadmap, value chain, ecosystem player profiles and strategies. The report also presents forecasts for C-RAN infrastructure investments from 2017 till 2030. The forecasts cover 3 individual submarkets and 6 regions.

The report comes with an associated Excel datasheet suite covering quantitative data from all numeric forecasts presented in the report.

Key Findings:

The report has the following key findings:

    Expected to reach nearly $9 Billion in global spending by the end of 2017, C-RAN is increasingly becoming the preferred approach to deploy future mobile networks. The market is further expected to grow at a CAGR of approximately 24% between 2017 and 2020.
    Small cells are also beginning to be deployed in a C-RAN architecture to leverage the benefits of resource pooling and multi-cell coordination. This trend is particularly prevalent in the indoor and enterprise segments, with a number of dedicated vendor solutions such as CommScope's OneCell, SpiderCloud's E-RAN, Ericsson's Radio Dot, and Huawei's LampSite.
    Mobile operators are exploring multiple baseband functional split options for C-RAN implementation, as they seek to ease the transition to 5G networks while reducing fronthaul costs.
    By the end of 2020, SNS Research estimates that vRAN/Cloud RAN deployments with virtualized baseband processing will account for nearly 20% of all C-RAN investments.
    The vendor arena is continuing to consolidate with several prominent M&A deals such as Mavenir Systems' recent merger with C-RAN specialist Ranzure Networks, which has positioned the company as an end-to-end provider of 5G-ready mobile network solutions.

Topics Covered:

The report covers the following topics:

    C-RAN ecosystem
    Market drivers and barriers
    Key architectural components (RRH, BBU and fronthaul)
    Competing RAN architectures including traditional macrocell base stations, standalone small cells and DAS (Distributed Antenna Systems)
    Key trends including baseband functional splitting, enterprise RAN, vRAN (Virtualized RAN)/Cloud RAN, MEC (Mobile Edge Computing) and RANaaS (RAN-as-a-Service)
    Fronthaul networking technologies and interface options
    C-RAN deployment models and mobile operator case studies
    Regulatory landscape and standardization
    Industry roadmap and value chain
    Profiles and strategies of over 230 leading ecosystem players including enabling technology providers, radio equipment suppliers, BBU vendors, fronthaul network equipment vendors and mobile operators
    Strategic recommendations for ecosystem players including C-RAN solution providers and mobile operators
    Market analysis and forecasts from 2017 till 2030

Make an Enquiry about TOC @ https://www.researchmoz.us/enquiry.php?type=E&repid=1237586

Forecast Segmentation:

Market forecasts are provided for each of the following submarkets and their subcategories:

    Submarket Segmentation
    RRHs (Remote Radio Heads)
    BBUs (Baseband Units)
    Fronthaul
    Air Interface Technology Segmentation
    3G & LTE
    5G NR (New Radio)
    Network Architecture Segmentation
    Non-Virtualized C-RAN
    vRAN/Cloud RAN
    Deployment Model Segmentation
    Indoor
    Outdoor
    Cell Size Segmentation
    Small Cells
    Macrocells
    Fronthaul Transport Network Technology Segmentation
    Dedicated Fiber
    WDM (Wavelength Division Multiplexing)
    OTN (Optical Transport Network)
    PON (Passive Optical Network)
    Ethernet
    Microwave

Browse Report @ https://www.researchmoz.us/the-cran-centralized-radio-access-network-ecosystem-2017-2030-opportunities-challenges-strategies-forecasts-report.html

    Millimeter Wave
    G.Fast & Others
    Regional Markets
    Asia Pacific
    Eastern Europe
    Middle East & Africa
    Latin & Central America
    North America
    Western Europe

For More Information Kindly Contact:

ResearchMoz
Mr. Nachiket Ghumare,
90 State Street, Albany NY, United States - 12207
Tel: +1-518-621-2074
USA-Canada Toll Free: 866-997-4948
Email: sales@researchmoz.us
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