The automotive communication technology market size accounted for USD 10.50 billion in 2022 and is projected to grow around US$ 45.72 billion by 2032, at a CAGR of 15.90% between 2023 and 2032.
Automotive Communication Technology consists of computer networks that permit vehicles as well as roadside units for sharing information and data for example traffic information and safety warnings. It is very beneficial in avoiding accidents and small traffic jams. It is a part of intelligent transportation system that allows buyer for being a part of more reliable transport network.
Various communication protocols are used in a vehicle to provide real-time information of surrounding systems such as traffic congestion, position of surrounding vehicle, and safety warnings. There are various types of communication protocols that include CAN, LIN, MOST, FlexRay, and ethernet that are used for establishing smooth communication between various parts of an automobile. CAN is the oldest protocol that has wide application owing to its higher level of safety, whereas automotive ethernet seems to grow at rapid rate because of higher data transmission speed. However, both the technologies have its own advantage and disadvantage depending on the requirement and purpose in the vehicle.
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Growth Factors
Rise in the air pollution with an alarming rate mainly because of carbon emission particularly from the transportation sector is one of the prime factors that drives the market growth for automotive communication technology. To control the emission rate from vehicles government of various regions are significantly switching their transportation sector into green mobility that includes zero-emission vehicles, shared mobility, electric & solar powered vehicles, and so on. These modern renewable sourced vehicles are equipped with new and advanced technologies and hence increase complexity within vehicles. This all triggers the need for better and advanced communication protocol for automobiles.
In addition, rising concern for safety and security spurs the sales growth of luxury vehicles along with vehicles equipped with advanced safety & comfort features. This is primarily attributed to the rising disposable income in developing nations coupled with increase in the road fatality rate. According to World Health Organization (WHO), every year 1.35 million people die because of road accidents and 90% of these deaths are in developing or under-developed regions. This is because of bad health condition of national highways and city roads.
Report Highlights | Details |
Market Size | USD 45.72 billion by 2032 |
Growth rate | CAGR of 15.90% from 2023 to 2032 |
Base Year | 2022 |
Historical Years | 2020-2021 |
Forecast Period | 2023 to 2032 |
Segments Covered | Bus Module, Application, Vehicle Class, Region |
Regional Scope | North America, Europe, Asia Pacific, Middle East & Africa, Latin America |
Report Highlights
Regional Snapshots
The Asia Pacific emerged as the global in automotive communication technology market as is one of the most significant automotive market and accounts for prominent revenue share on the global scale. The region held 44.7% of revenue share in the year 2020 and expected to continue its dominance with a growth rate of 11.8% during the analysis period. It accounts for more than three-fifth of the global automobile sales and the share is increasing every year at a significant rate. China and India are the front-runners in the Asian automotive industry and expected to be the most promising regions for the automotive sales growth in the forthcoming years. The prime reason accounting for the growth of these countries is advanced semiconductor market coupled with large consumer base.
On the contrary, Middle East and Africa is the fastest growing market and registers a CAGR of 22.8% during the forecast period of 2021 to 2031. Automotive industry is highly receptive to advanced technologies and MEA is one of the fastest growing regions in terms of technology development. The region is a hotspot for various smart upcoming technologies such as smart home, smart communication devices, smartphones, and smart cars as well.
Further, Automotive industry has been transformed to a greater extent by the influence of these new technologies and hence the approach for forerunner players and new comers to the market also varies. New entrants are adopting different approaches for jumping directly to the new technology penetration while forerunners in the market are focusing on inorganic approaches for their growth such as merger & acquisition, collaboration, investment in research & development. For instance, in 2020, a Dubai-based automotive manufacturer, W Motors plans to move its luxury hypercar centre for production to UAE from its facility in Italy. Therefore, MEA is a promising region for the automotive industry growth.
Key Players & Strategies
The market for automotive communication technology is highly fragmented because of the presence of large number of industry participants. Further, several automotive communication technology market players are investing prominently for the advancement and development in automotive ethernet. For instance, in March 2020, Argus Cyber Security, a leading cyber security solution provider for automotive sector and NXP Semiconductor, an automotive semiconductor supplier, announced a new integrated solution that protects the ethernet network communications that are based on the NXP S32G vehicle processor. The solution will upgrade the security of ethernet ports by using Argus’ Ethernet Intrusion Detection System (IDS). Similarly, other market players are also investing significantly for the product advancement.
Read Also: Automotive Interior Materials Market Size to Surpass US$ 85.16 Bn by 2032
Segments Covered in the Report
This report forecasts revenue growth at global, regional, and country levels and provides an analysis of the latest industry trends in each of the sub-segments from 2023 to 2032. For the purpose of this study, Precedence Research has segmented the global Automotive Communication Technology Market report on the basis of bus module, application, vehicle class, and region:
By Bus Module Outlook
By Application Outlook
By Vehicle Class Outlook
By Geography
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