Skip to main content

Technavio names top 5 vendors in the global smart highway construction market 2017-2021

Technology research company Technavio has announced the top five leading vendors in their recent global smart highway construction market 2017-2021 report. This market research report also lists 14 other prominent vendors that are expected to impact the market during the forecast period. According to the report, the smart highway construction market will grow at an exponential rate and post a CAGR of almost 94 per cent by 2021. The vendors in this market can expect significant market growth in the coming ye
May 26, 2017 Read time: 3 mins
Technology research company Technavio has announced the top five leading vendors in their recent global smart highway construction market 2017-2021 report. This market research report also lists 14 other prominent vendors that are expected to impact the market during the forecast period.

According to the report, the smart highway construction market will grow at an exponential rate and post a CAGR of almost 94 per cent by 2021. The vendors in this market can expect significant market growth in the coming years since governments worldwide are looking for effective solutions to reduce traffic congestion and road traffic accidents.

“The major growth driver for the global smart highway construction market is the development of industrial and economic corridors. For example, the government of India plans to develop an industrial economic corridor between Delhi and Mumbai. Such projects will generate demand for the construction of smart highways in the coming years,” says Gaurav Mohindru, a lead research analyst at Technavio for %$Linker: 2 External <?xml version="1.0" encoding="utf-16"?><dictionary /> 0 0 0 oLinkExternal construction false http://www.technavio.com/industries/construction?utm_source=t5&amp;utm_medium=bw&amp;utm_campaign=businesswire?ITS%20News%20Technavio false false%> research.

Vendors in the market are likely to grow during the forecast period as more smart highway projects proposals gain momentum worldwide. Furthermore, the growth of urban population is already taking its toll on the current road infrastructure due to the surge in the number of vehicles on the road, leading to traffic congestion especially in densely populated cities such as Mumbai, London, New York, and Barcelona. To counter such challenges, smart highway constructions are likely to increase globally, driving the growth of the global smart highway construction market.

Technavio market research analysts identify the following key vendors:

Continental Engineering, which builds projects such as condominiums, civil infrastructure, offices, high-rise buildings, hospitals, and factories. The civil work of the project includes the construction of an eight-lane expressway on the outer ring road in Hyderabad, India.

6836 Heijmans, which was among the first construction companies to include smart highway construction in its portfolio. It also develops property, residential buildings, and roads. The company is active in the Netherlands, Belgium, and Germany.

Nippon Koei, a leading international engineering consultant in Asia. The scope of its work in the smart highway construction projects such as the Hyderabad Outer Ring Road included civil works, designing, planning, and scheduling.

Transstroy, a successor to the Ministry of Transport Construction of the USSR (Union of Soviet Socialist Republics), has a diverse portfolio with expertise in the field of railway, roadway, airfield, industrial, civil construction, and hydraulic engineering.

4742 Vinci Construction, which has a presence in many sectors in 100 countries around the world. It specializes in civil engineering works, structural work, and other construction-related departments. It is involved in the construction of the M4 Corridor to the south of the city of Newport, the UK. The scope of the project involves the construction of a 2.5-km long cable-stayed viaduct, two interchanges and 36 structures.

For more information on companies in this article

Related Content

  • Autotalks world first in V2V and V2I communications
    October 19, 2012
    Autotalks will present Craton, which it says is the world’s first VLSI for Vehicle-to-Vehicle (V2V) and related Vehicle-to-Infrastructure (V2I) communication. The complete functionality of an On-Board-Unit (OBU) is supported by Craton and its RFIC companion Pluton which together form a true automotive-grade V2V transceiver. Craton is capable of authenticating all over-the-air messages, eliminating the need for complex message selection algorithms.
  • Smart Parking and the Connected Consumer - new ITS America Report
    December 6, 2012
    The Intelligent Transportation Society of America (ITS America) and co-author Steven H Bayless will present a new report titled Smart Parking and the Connected Consumer - Opportunities for Facility Operators on Monday, 10 December at the Hyatt Regency, Jersey City in conjunction with a Smart Parking Symposium in Jersey City, New Jersey. The report will analyse both the opportunities and challenges faced by parking facility operators and technology providers when implementing smart parking systems. The repo
  • Countdown to ITS World Congress
    September 28, 2016
    The ITS World Congress 2016, taking place in Melbourne, Australia, 10-14 October, has attracted 7,000+delegates from 60 countries, as well as over 300 exhibitors, providing a showcase for the latest advances and solutions in intelligent transportation systems.
  • Flir online training in September
    September 12, 2016
    Flir’s traffic webinars during September provide an introduction to the TrafiOne smart city sensor for traffic monitoring and dynamic traffic signal control. TrafiOne uses thermal imaging to detect the presence of pedestrians and cyclists that are approaching and waiting at the kerb or using the crossing. What’s new in FLUX 3.0 looks at the new features of this video management system, which collects traffic data, events, alarms and video images created by a wide variety of video detection modules. Th