V2X (Vehicle-to-Everything) Communications 2019 Market Segmentation,Application,Technology & Market Analysis Research Report to 2030

“V2X (Vehicle-to-Everything) Communications Market”
WiseGuyReports.Com Publish a New Market Research Report On –“ V2X (Vehicle-to-Everything) Communications 2019 Market Segmentation,Application,Technology & Market Analysis Research Report to 2030”.


V2X (Vehicle-to-Everything) Communications Industry 2019


Commonly referred to as V2X, vehicle-to-everything communications technology allows vehicles to directly communicate with each other, roadside infrastructure, and other road users to deliver an array of benefits in the form of road safety, traffic efficiency, smart mobility, environmental sustainability, and driver convenience. In addition, V2X is also helping pave the way for fully autonomous driving through its unique non line-of-sight sensing capability which allows vehicles to detect potential hazards, traffic, and road conditions from longer distances and sooner than other in-vehicle sensors such as cameras, radar, and LiDAR (Light Detection and Ranging).

Although legacy V2I (Vehicle-to-Infrastructure) technologies are currently in operational use worldwide for ETC (Electronic Toll Collection) and relatively simple V2I applications, advanced V2X systems – capable of supporting V2V (Vehicle-to-Vehicle), V2I and other forms of V2X communications – are beginning to gain broad commercial acceptance with two competing technologies vying for the attention of automakers and regulators:  the commercially mature IEEE 802.11p/DSRC (Dedicated Short Range Communications) standard, and the relatively new 3GPP-defined C-V2X (Cellular V2X) technology which has a forward evolutionary path towards 5G.


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With an initial focus on road safety and traffic efficiency applications, Toyota and GM (General Motors) have already equipped some of their vehicle models with IEEE 802.11p-based V2X technology in Japan and North America.  Among other commercial commitments, Volkswagen will begin deploying IEEE 802.11p on volume models in Europe starting from 2019, while Geely and Ford plan to integrate C-V2X in their new vehicles by 2021 and 2022 respectively. It is also worth nothing that a number of luxury automakers – including BMW, Daimler, Volkswagen’s subsidiary Audi, and Volvo Cars – already deliver certain V2X-type applications through wide-area cellular connectivity and supporting infrastructure such as appropriately equipped roadwork trailers.

Despite the ongoing 802.11p/DSRC versus C-V2X debate, regulatory uncertainty and other challenges, global spending on V2X communications technology is expected to grow at a CAGR of more than 170% between 2019 and 2022. SNS Telecom & IT predicts that by the end of 2022,  V2X will account for a market worth $1.2 Billion, with an installed base of nearly 6 Million V2X-equipped vehicles worldwide. 

The “V2X (Vehicle-to-Everything) Communications Ecosystem: 2019 – 2030 – Opportunities, Challenges, Strategies & Forecasts” report presents an in-depth assessment of the V2X ecosystem including market drivers, challenges, enabling technologies, application scenarios, use cases, business models, key trends, standardization, spectrum availability/allocation, regulatory landscape, V2X deployment case studies, opportunities, future roadmap, value chain, ecosystem player profiles and strategies. The report also presents market size forecasts from 2019 till 2030. The forecasts cover four submarkets, two air interface technologies,  10 application categories and five regions.

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

Topics Covered
The report covers the following topics: 
 – V2X ecosystem
 – Market drivers and barriers
 – V2V, V2I, V2P/V2D, V2N and other types of V2X communications
 – V2X architecture and key elements
 – V2X transmission modes, message sets and service capabilities
 – IEEE 802.11p, C-V2X and other enabling technologies for V2X communications
 – Complementary technologies including ADAS (Advanced Driver Assistance Systems), precision positioning, edge & cloud computing, network slicing, artificial intelligence, machine learning, Big Data and advanced analytics
 – Key trends including the adoption of V2X as an integral part of automakers’ vehicle development roadmaps; commercial readiness of V2X systems capable of supporting both  IEEE 802.11p and C-V2X; launch of large scale, city-wide V2X deployments; availability of nationally and transnationally scalable V2X SCMS (Security Credential Management System) service offerings; emergence of motorcycle-specific V2X safety applications; use of V2V communications to support truck platooning systems; and delivery of certain V2X-type applications through  wide-area cellular connectivity
 – Review of more than 160 V2X applications – ranging from safety-related warnings and traffic light advisories to “see-through” visibility and fully autonomous driving
 – Business models for monetizing V2X applications
 – Examination of IEEE 802.11p and C-V2X engagements worldwide, including case studies of 22 live V2X deployments
 – Spectrum availability and allocation for V2X across the global, regional and national regulatory domains
 – Standardization, regulatory and collaborative initiatives
 – Future roadmap and value chain
 – Profiles and strategies of over 330 leading ecosystem players including automotive OEMS and V2X technology & solution providers
 – Exclusive interview transcripts from eight companies across the V2X value chain: Cohda Wireless, Foresight Autonomous Holdings, Kapsch TrafficCom, Nokia, NXP Semiconductors, OnBoard Security, Qualcomm, and Savari
 – Strategic recommendations for automotive OEMS, V2X technology & solution providers, mobile operators, cellular industry specialists and road operators
 – Market analysis and forecasts from 2019 till 2030


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Table Of Contents – Major Key Points

Chapter 1: Introduction

Executive Summary

Topics Covered

Forecast Segmentation

Key Questions Answered

Key Findings


Target Audience

Companies & Organizations Mentioned


Chapter 2: An Overview of V2X Communications

What is V2X Communications?

Key Characteristics of V2X Communications

Types of V2X Communications

V2V (Vehicle-to-Vehicle)

V2I (Vehicle-to-Infrastructure)

V2P/V2D (Vehicle-to-Pedestrian/Device)

V2M (Vehicle-to-Motorcycle)

V2N (Vehicle-to-Network)

V2G (Vehicle-to-Grid), V2H (Vehicle-to-Home) & Adjacent-Concepts

Transmission Modes




V2X Message Sets & Service Capabilities

Periodic Awareness: CAM (Cooperative Awareness Message)/BSM (Basic Safety Message) Part 1

Event Triggered Safety Alerts: DENM (Decentralized Environmental Notification Messages)/BSM Part 2

CPM (Collective Perception Message)

MCM (Maneuver Coordination Message)

SPaT (Signal Phase & Timing)

MAP (Map Data Message)

GNSS Correction

SSM/SRM (Signal Status & Request Messages)

PSM (Personal Safety Message)

IVIM (Infrastructure-to-Vehicle Information Message), TIM/RSM (Traveler Information/Road Safety Message)

BIM (Basic Information/Infrastructure Message)

MCDM (Multimedia Content Dissemination Message)

Video & Sensor Information Exchange

Standard Voice & Data Services

PVD (Probe Vehicle Data)

PDM (Probe Data Management)

Other V2X-Specific Message Types

Wireless Technologies for V2X Communications

IEEE 802.11p/DSRC (Dedicated Short Range Communications)

C-V2X (Cellular V2X)

V2X Architecture & Key Elements

Vehicular OBUs (On-Board Units)

Non-Vehicular V2X-Capable Devices

RSUs (Roadside Units)

V2X Applications

V2X Application Software

V2X Middleware & Application Server

V2X Control Function & Cellular Network-Specific Elements

V2X Security Subsystem

Key Applications Areas

Road Safety

Traffic Management & Optimization

Navigation & Traveler/Driver Information

Transit & Public Transport

Commercial Vehicle Operations

Emergency Services & Public Safety

Environmental Sustainability

Road Weather Management

Autonomous Driving & Advanced Applications

Value-Added Services


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