Wireless Infrastructure Market Analysis, Size, Share, Growth, Trends And Forecast To 2019

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The wireless infrastructure market is projected to reach USD 163 billion by 2019. It had previously generated revenue totaling USD 58 billion in 2012. Growth of the market can be attributed the growing base of smarthphones currently at 8.5 million. The market can capitalize on the growth of the smartphone industry which should reach 1 trillion by 2019.


  • Wireless Infrastructure Market Size, Share, Global Trends, Company

    Profiles, Demand, Insights, Analysis, Research, Report, Opportunities,

    Segmentation and Forecast To 2013 - 2019

    The wireless infrastructure market is projected to reach USD 163 billion by 2019. It had

    previously generated revenue totaling USD 58 billion in 2012. Growth of the market can be

    attributed the growing base of smarthphones currently at 8.5 million. The market can capitalize

    on the growth of the smartphone industry which should reach 1 trillion by 2019.

    The wireless infrastructure market aims to expand by upgrading core networks and base stations.

    Creating sophisticated wireless infrastructure will create demand for web application and mobile

    application development. This in turn, will result in advanced wireless infrastructure and

    providing an impetus to the market growth.

    The wireless infrastructure market has expanded its influence by investing in Heterogeneous

    Network (HeT) which includes Distributed Antenna Systems (DAS), Wi-Fi, small cells, and

    cloud RAN (Radio Area Network).

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    The wireless infrastructure market depends on technologies of 4G, LTE (Long Term Evolution),

    HSPA (High Speed Packet Access), and WiMax. The value of the market has increases since it

    can connect smartphones, tablets, apps, and Internet of Things (IoT). 4G will experience high

    growth through the forecast period (2014-2019). But LTE seems to be a high contender to

    replace 4G since it contributes 80% of the market revenue. Demand from operators to install a

    high-speed wireless network will impact market growth in the future. Moreover, the high data

    speed in a wireless network reduces the cost per megabit, proving beneficial to network


    North America, Europe, Asia Pacific, and Rest of the World (RoW) are the regions covered in

    the market. Asia Pacific leads the wireless infrastructure market, followed by North America and

    Europe. North America faces steady growth on account of adopting wireless infrastructure for

    video surveillance. Plus the cost benefits of a wireless network will allow network operators to

    build their wireless network and move away from leased cables in a broadband network.

    Prominent players in the wireless infrastructure market are Huawei, Samsung, Ericsson, Cisco,

    and Alcatel-Lucent. Mergers and acquisitions are a frequent strategy by companies trying to

    maintain their market presence. In 2015, Nokia successfully bought Alcatel-Lucent, which will

    give stiff competition to Huawei and Ericsson. The acquisition by Nokia will give it an

    advantage of more than USD 25 billion in revenue and 100,000 employees.

    Table Of Content:


    Wireless Infrastructure Market Driving Forces

    Core Wireless Infrastructure

    Wireless Infrastructure Industry Challenges

    Wireless Infrastructure Response to Market Challenges

    Wireless Infrastructure Call to action

    Wireless Infrastructure Industry Addresses Fast-Paced Change

    Wireless Infrastructure Market Shares

    Wireless Infrastructure Market Forecasts



    1.1 Communications Industry

    1.1.1 Combining Global Scale Advantages With Local Presence

    1.1.2 Design Of The Network Directly Affects Cost, Capacity, And Latency

    1.1.3 Ericsson Combining Global Scale Advantages With Local Presence

    1.2 Communications Equipment Manufacturers

    1.2.1 Communications Equipment Vendor Strategic Focus.

    1.2.2 Beyond ICT: Embracing The Next Digital Revolution: the Internet of Things

    1.2.3 Integration of the Digital And Physical Brings Digital Revolution and Need to Redefine

    What Work People Do

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    1.2.4 Networks Bring Digital Government, Smarter Cities

    1.2.5 The Age of Digital Business

    1.2.6 Borderless Internet Gives Rise To A Digital Society

    1.3 Smart Infrastructure Opportunities For ICT

    1.3.1 IT Systems Evolving From Post-Processing To Real-Time Business Systems

    1.3.2 IT Enterprise Architecture Challenged to Process Huge Volumes Of Data

    1.3.3 Digital Society Replaces Low-bandwidth Networks

    1.4 ICT transformation

    1.4.1 Apps Market Expands

    1.5 World Economic Forum.

    1.6 Networks Segment

    1.6.1 CDMA (Code Division Multiple Access)

    1.6.2 CDMA2000:

    1.6.3 CDMA2000 Evolution Path:

    1.6.4 GSM (Global System for Mobile Communications)

    1.6.5 W-CDMA (Wideband Code Division Multiple Access)

    1.6.6 LTE (Long-Term Evolution)

    1.7 Global Economy

    1.7.1 The IT Market

    1.7.2 New World Order Built On The Globally Integrated Enterprise

  • 1.8 Enterprise Information Accessed By Mobile Workers

    1.8.1 Cloud Technology Brings Rapid Time to Value

    1.9 Application Server Virtual Systems, Clustering, Fail-Over, And Load Balancing

    1.9.1 Cloud System Continuous Deployment Models

    1.10 Application Server Provides Competitive Advantage

    1.11 SOA Reusable Software Components

    1.11.1 SOA Community-Based Marketplaces

    1.11.2 Components Aimed At Developer Base

    1.12 Infrastructure Switch

    1.12.1 Market Change

    1.13 Increasing Java Productivity

    1.13.1 Increasing Developer Base


    2.1 Wireless Infrastructure Market Driving Forces

    2.1.1 Core Wireless Infrastructure

    2.1.2 Wireless Infrastructure Industry Challenges

    2.1.3 Wireless Infrastructure Response to Market Challenges

    2.1.4 Wireless Infrastructure Call to action

    2.1.5 Wireless Infrastructure Industry Addresses Fast-Paced Change

    2.2 Wireless Infrastructure Market Shares

    2.2.1 Wireless Core Network Equipment Infrastructure Market Shares

    2.2.2 Ericsson Core Network Infrastructure

    2.2.3 Ericsson Leading Supplier of CDMA Solutions For Network Operators

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    2.2.4 Ericsson Evolved Packet Core (EPC)

    2.2.5 Huawei

    2.2.6 Revenues in Alcatel-Lucent Wireless Division

    2.2.7 Alcatel-Lucent Networks Segment is Number in IP/MPLS Service Provider Edge Routers

    with 25% Market Share

    2.2.8 Alcatel-Lucent Wireless

    2.2.9 ZTE 2-24

    2.2.10 Wireless Infrastructure Edge, IP, and Base Station Market Shares

    2.2.11 Service Provider Router And Switches Market

    2.2.12 GSM / GRPS / Edge 2 G Market Shares

    2.2.13 CDMA 3G Market Shares

    2.2.14 WCDMA / UMTS / HSPA 3G Market Shares

    2.3 Wireless Infrastructure Market Forecasts

    2.3.1 GSM / GRPS / Edge 2 G, CDMA 3G, WCDMA / UMTS / HSPA 3G, LTE / 4G Market


    2.3.2 Wireless LTE 4G Infrastructure

  • 2.3.3 LTE / 4G Infrastructure Equipment Market Shares

    2.3.4 Alcatel-Lucent LTE

    2.3.5 Wireless Infrastructure Market Segments, LTE Units and Dollars

    2.3.6 LTE Device Market Shares

    2.3.7 Nokia Siemens Networks

    2.3.8 IP/MPLS Service Edge Routers

    2.4 Wireless Infrastructure Market Forecasts

    2.4.1 Core Wireless Infrastructure Market

    2.4.2 GSM / GRPS / EDGE 2G Market Forecasts

    2.4.3 CDMA

    2.4.4 Alcatel Lucent CDMA

    2.4.5 Huawei CDMA

    2.4.6 Ericsson CDMA

    2.5 LTE

    2.5.1 LTE Market Shares

    2.5.2 Ericsson Leads LTE Market By Wide Margin

    2.5.3 Ericsson LTE

    2.5.4 Wireless Infrastructure Market Segments, LTE Market Forecasts

    2.5.5 LTE Devices

    2.5.6 Ericsson Has A Leading LTE Market Position

    2.5.7 Status of the Global LTE 1800 Market

    2.5.8 Samsung LTE

    2.5.9 Ericsson leads in LTE, But Rivals Huawei, ZTE and Samsung Gain

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    2.5.10 Europe, China and India Ramp LTE investment in 2014 and 2015, Unlocking

    Opportunities To Grow LTE Revenue

    2.5.11 LTE Market Forecasts

    2.6 Femtocell and Small Cell Broadband Cellular Networks

    2.6.1 Femtocell and Small Cell Market Participants

    2.6.2 Femtocell and Small Cell Forecasts

    2.6.3 Femtocell and Small Cell Implementations

    2.6.4 FCC an Industry-Consensus Definition For Visually Unobtrusive Wireless Small Cells 2.7 Software Defined Networking (SDN) and Network Function Virtualization (NFV)

    2.7.1 Software Defined Networking (SDN) and Network Function Virtualization (NFV)

    Reordering Of Market Share

    2.7.2 Mobile Packet Core

    2.7.3 Mobile Broadband1

    2.7.4 Small Cells Are Disruptive Technology In Networks

    2.8 Wireless Infrastructure Return on Investment

    2.9 Wireless Infrastructure Regional Market Analysis

    2.9.1 Ericsson Aiming To Have 50% of LTE Market in Latin America

    2.9.2 Ericsson Sells Wireless Infrastructure in Latin America Market

    2.9.3 Latin America

  • 2.9.4 Ericsson LTE

    2.9.5 Ericson Regional Wireless Subscriber Analysis

    2.9.6 Ericsson Regional Wireless Subscriber Analysis

    2.9.7 Global Mobile Traffic for Data

    2.9.8 Huawei Regional Participation in India

    2.9.9 CDMA in India, North America and China


    3.1 Alcatel Lucent

    3.1.1 Alcatel-Lucent Wireless Networks Segment

    3.1.2 Alcatel Lucent Korea

    3.1.3 Korea Broadband Infrastructure Wireless Projects

    3.1.4 Alcatel-Lucent lightRadio Portfolio 3.2 Ericsson Wireless Infrastructure Products

    3.2.1 Ericsson Radio Base Station Platform Strength

    3.2.2 Ericsson CDMA Voice Core

    3.2.3 Ericsson Packet MSC

    3.2.4 Ericsson Circuit MTX

    3.2.5 Ericsson HD Voice Call On CDMA

    3.2.6 Mobile Broadband

    3.2.7 Ericsson SSR 8000 Evolved Packet Gateway

    3.2.8 Ericsson EDGE (Enhanced Data Rates for Global Evolution) Benefits

    3.2.9 Ericsson EDGE Evolution

    3.2.10 Ericsson ICT

    3.2.11 Ericsson End-To-End Solutions For Major Mobile Communication Standards

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    3.2.12 Ericsson Strategic Engagement Topics

    3.2.13 Ericsson EDGE Enhanced Mobile Networks

    3.2.14 Ericsson LTE Broadcast

    3.2.15 Ericsson Mobile Cloud Accelerator

    3.2.16 Ericsson Mobile Backhaul

    3.2.17 Ericsson Backhaul for Existing Radio Networks

    3.2.18 Ericsson Packet Core Solutions

    3.2.19 Ericsson SGSN-MME

    3.2.20 Ericsson Service-Aware Policy Controller

    3.2.21 Ericsson Mobile Switching

    3.2.22 Ericsson Application Enablement: Apps

    3.2.23 Ericsson Mobile Backhaul Solution

    3.2.24 Ericsson Blade Server Platform For Core Networks

    3.2.25 Ericsson Packet Core Platforms

    3.3 Nokia Siemens Networks

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