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Drive by Wire Market by Application, Vehicle Type and Component: Global Opportunity Analysis and Industry Forecast, 2019-2026

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    Report

  • 319 Pages
  • December 2019
  • Region: Global
  • Allied Market Research
  • ID: 4990100
Drive by wire systems are also known as the X by wire and is semi-automatic, computer-controlled technology which is used in autonomous vehicles. This system is used to control the vehicular systems such as handling, braking, steering, and other vehicle motor functions. In addition, electronic components such as sensors and actuators are used to control the vehicular functions and eliminate the need to use traditional mechanical linkages.
Drive by wire market is anticipated to witness significant growth over the years, owing to rise in development of autonomous vehicles and development of connected infrastructure.

The global drive by wire market is segmented into application, vehicle type, component and region. Depending on application, the market is classified into throttle by wire, shift by wire, brake by wire, park by wire, and steer by wire. On the basis of vehicle type, it is divided into passenger car, commercial vehicle, electric vehicle, and Off-highway vehicles. Components are categorized as Actuator, Electronic Control Unit (ECU), Engine Control Module (ECM), Electronic Throttle Control Module (ETCM), Electronic Transmission Control Unit (ETCU), Feedback Motor, Parking Pawl, Sensors, and others. By region, the market is analyzed across North America, Europe, Asia-Pacific, and LAMEA.

The key players analyzed in the Drive by wire market include Continental AG, Robert Bosch GmbH, ZF Friedrichshafen, Nissan Motor Corporation, DENSO Corporation, NEXTEER AUTOMOTIVE GROUP LIMITED, Kongsberg Automotive, Ficosa Corporation (Panasonic Corporation), Curtiss-Wright Corporation, Hitachi Automotive, and Others.

KEY BENEFITS FOR STAKEHOLDERS
  • This study presents the analytical depiction of the global Drive by wire market along with the current trends and future estimations to depict the imminent investment pockets.
  • The overall market potential is determined to understand the profitable trends to enable stakeholders gain a stronger foothold in the market.
  • The report presents information related to key drivers, restraints, and opportunities with a detailed impact analysis.
  • The current market is quantitatively analyzed from 2018 to 2025 to highlight the financial competency of the market.
  • Porter’s five forces analysis illustrates the potency of the buyers and suppliers.

KEY MARKET SEGMENTS

By Application
  • Throttle by wire
  • Shift by wire
  • Brake by wire
  • Park by wire
  • Steer by wire

By Vehicle Type
  • Passenger Car
  • Commercial vehicle
  • Electric Vehicle
  • Off-highway Vehicles

By Component
  • Actuator
  • Electronic Control Unit (ECU)
  • Engine Control Module (ECM)
  • Electronic Throttle Control Module (ETCM)
  • Electronic Transmission Control Unit (ETCU)
  • Feedback Motor
  • Parking Pawl
  • Sensors
  • others

By Region
  • North America
  • U.S.
  • Canada
  • Mexico
  • Europe
  • Germany
  • France
  • UK
  • Italy
  • Rest of Europe
  • Asia-Pacific
  • Japan
  • China
  • India
  • South Korea
  • Rest of Asia-Pacific
  • LAMEA
  • Latin America
  • Middle East
  • Africa

Table of Contents

Chapter 1: Introduction
1.1. Report Description
1.2. Key Benefits For Stakeholders
1.3. Key Market Segments
1.4. Research Methodology
1.4.1. Primary Research
1.4.2. Secondary Research
1.4.3. Analyst Tools And Models
Chapter 2: Executive Summary
2.1. CXO Perspective
Chapter 3: Market Overview
3.1. Market Definition And Scope
3.2. Key Findings
3.2.1. Top Impacting Factors
3.2.2. Top Investment Pockets
3.2.3. Top Winning Strategies
3.3. Porter’S Five Forces Analysis
3.4. Market Share Analysis (2017)
3.5. Market Dynamics
3.5.1. Drivers
3.5.1.1. Rising Development of Autonomous Vehicles.
3.5.1.2. Growth of Connected Infrastructure.
3.5.2. Restraint
3.5.2.1. High Cost of Drive By Wire System
3.5.2.2. Threat of Data Hacking And Malfunctioning
3.5.3. Opportunities
3.5.3.1. Development of Smart Cities.
Chapter 4: Drive By Wire Market, By Application
4.1. Overview
4.2. Throttle By Wire
4.2.1. Key Market Trends, Growth Factors And Opportunities
4.2.2. Market Size And Forecast, By Region
4.2.3. Market Analysis By Country
4.3. Shift By Wire
4.3.1. Key Market Trends, Growth Factors, And Opportunities
4.3.2. Market Size And Forecast, By Region
4.3.3. Market Analysis By Country
4.4. Brake By Wire
4.4.1. Key Market Trends, Growth Factors, And Opportunities
4.4.2. Market Size And Forecast, By Region
4.4.3. Market Analysis By Country
4.5. Park By Wire
4.5.1. Key Market Trends, Growth Factors, And Opportunities
4.5.2. Market Size And Forecast, By Region
4.5.3. Market Analysis By Country
4.6. Steer By Wire
4.6.1. Key Market Trends, Growth Factors, And Opportunities
4.6.2. Market Size And Forecast, By Region
4.6.3. Market Analysis By Country
Chapter 5: Drive By Wire Market, By Vehicle Type
5.1. Overview
5.2. Passenger Car
5.2.1. Key Market Trends, Growth Factors And Opportunities
5.2.2. Market Size And Forecast, By Region
5.2.3. Market Analysis By Country
5.3. Commercial Vehicle
5.3.1. Key Market Trends, Growth Factors, And Opportunities
5.3.2. Market Size And Forecast, By Region
5.3.3. Market Analysis By Country
5.4. Electric Vehicle
5.4.1. Key Market Trends, Growth Factors, And Opportunities
5.4.2. Market Size And Forecast, By Region
5.4.3. Market Analysis By Country
5.5. off-Highway Vehicles
5.5.1. Key Market Trends, Growth Factors, And Opportunities
5.5.2. Market Size And Forecast, By Region
5.5.3. Market Analysis By Country
Chapter 6: Drive By Wire Market, By Component
6.1. Overview
6.2. Actuator
6.2.1. Key Market Trends, Growth Factors And Opportunities
6.2.2. Market Size And Forecast, By Region
6.2.3. Market Analysis By Country
6.3. Electronic Control Unit (Ecu)
6.3.1. Key Market Trends, Growth Factors, And Opportunities
6.3.2. Market Size And Forecast, By Region
6.3.3. Market Analysis By Country
6.4. Engine Control Module (Ecm)
6.4.1. Key Market Trends, Growth Factors, And Opportunities
6.4.2. Market Size And Forecast, By Region
6.4.3. Market Analysis By Country
6.5. Electronic Throttle Control Module (Etcm)
6.5.1. Key Market Trends, Growth Factors, And Opportunities
6.5.2. Market Size And Forecast, By Region
6.5.3. Market Analysis By Country
6.6. Electronic Transmission Control Unit (Etcu)
6.6.1. Key Market Trends, Growth Factors, And Opportunities
6.6.2. Market Size And Forecast, By Region
6.6.3. Market Analysis By Country
6.7. Feedback Motor
6.7.1. Key Market Trends, Growth Factors, And Opportunities
6.7.2. Market Size And Forecast, By Region
6.7.3. Market Analysis By Country
6.8. Parking Pawl
6.8.1. Key Market Trends, Growth Factors, And Opportunities
6.8.2. Market Size And Forecast, By Region
6.8.3. Market Analysis By Country
6.9. Sensors
6.9.1. Key Market Trends, Growth Factors, And Opportunities
6.9.2. Market Size And Forecast, By Region
6.9.3. Market Analysis By Country
6.10. Others
6.10.1. Key Market Trends, Growth Factors, And Opportunities
6.10.2. Market Size And Forecast, By Region
6.10.3. Market Analysis By Country
Chapter 7: Drive By Wire Market, By Region
7.1. Overview
7.2. North America
7.2.1. Key Market Trends, Growth Factors, And Opportunities
7.2.2. Market Size And Forecast, By Application
7.2.3. Market Size And Forecast, By Vehicle Type
7.2.4. Market Size And Forecast, By Component
7.2.5. Market Analysis By Country
7.2.5.1. U.S.
7.2.5.1.1. Market Size And Forecast, By Application
7.2.5.1.2. Market Size And Forecast, By Vehicle Type
7.2.5.1.3. Market Size And Forecast, By Component
7.2.5.2. Canada
7.2.5.2.1. Market Size And Forecast, By Application
7.2.5.2.2. Market Size And Forecast, By Vehicle Type
7.2.5.2.3. Market Size And Forecast, By Component
7.2.5.3. Mexico
7.2.5.3.1. Market Size And Forecast, By Application
7.2.5.3.2. Market Size And Forecast, By Vehicle Type
7.2.5.3.3. Market Size And Forecast, By Component
7.3. Europe
7.3.1. Key Market Trends, Growth Factors, And Opportunities
7.3.2. Market Size And Forecast, By Application
7.3.3. Market Size And Forecast, By Vehicle Type
7.3.4. Market Size And Forecast, By Component
7.3.5. Market Analysis By Country
7.3.5.1. U.K.
7.3.5.1.1. Market Size And Forecast, By Application
7.3.5.1.2. Market Size And Forecast, By Vehicle Type
7.3.5.1.3. Market Size And Forecast, By Component
7.3.5.2. Germany
7.3.5.2.1. Market Size And Forecast, By Application
7.3.5.2.2. Market Size And Forecast, By Vehicle Type
7.3.5.2.3. Market Size And Forecast, By Component
7.3.5.3. Italy
7.3.5.3.1. Market Size And Forecast, By Application
7.3.5.3.2. Market Size And Forecast, By Vehicle Type
7.3.5.3.3. Market Size And Forecast, By Component
7.3.5.4. France
7.3.5.4.1. Market Size And Forecast, By Application
7.3.5.4.2. Market Size And Forecast, By Vehicle Type
7.3.5.4.3. Market Size And Forecast, By Component
7.3.5.5. Rest of Europe
7.3.5.5.1. Market Size And Forecast, By Application
7.3.5.5.2. Market Size And Forecast, By Vehicle Type
7.3.5.5.3. Market Size And Forecast, By Component
7.4. Asia-Pacific
7.4.1. Key Market Trends, Growth Factors, And Opportunities
7.4.2. Market Size And Forecast, By Application
7.4.3. Market Size And Forecast, By Vehicle Type
7.4.4. Market Size And Forecast, By Component
7.4.5. Market Analysis By Country
7.4.5.1. China
7.4.5.1.1. Market Size And Forecast, By Application
7.4.5.1.2. Market Size And Forecast, By Vehicle Type
7.4.5.1.3. Market Size And Forecast, By Component
7.4.5.2. Japan
7.4.5.2.1. Market Size And Forecast, By Application
7.4.5.2.2. Market Size And Forecast, By Vehicle Type
7.4.5.2.3. Market Size And Forecast, By Component
7.4.5.3. India
7.4.5.3.1. Market Size And Forecast, By Application
7.4.5.3.2. Market Size And Forecast, By Vehicle Type
7.4.5.3.3. Market Size And Forecast, By Component
7.4.5.4. South Korea
7.4.5.4.1. Market Size And Forecast, By Application
7.4.5.4.2. Market Size And Forecast, By Vehicle Type
7.4.5.4.3. Market Size And Forecast, By Component
7.4.5.5. Rest of Asia-Pacific
7.4.5.5.1. Market Size And Forecast, By Application
7.4.5.5.2. Market Size And Forecast, By Vehicle Type
7.4.5.5.3. Market Size And Forecast, By Component
7.5. LAMEA
7.5.1. Key Market Trends, Growth Factors, And Opportunities
7.5.2. Market Size And Forecast, By Application
7.5.3. Market Size And Forecast, By Vehicle Type
7.5.4. Market Size And Forecast, By Component
7.5.5. Market Analysis By Country
7.5.5.1. Latin America
7.5.5.1.1. Market Size And Forecast, By Application
7.5.5.1.2. Market Size And Forecast, By Vehicle Type
7.5.5.1.3. Market Size And Forecast, By Component
7.5.5.2. Middle East
7.5.5.2.1. Market Size And Forecast, By Application
7.5.5.2.2. Market Size And Forecast, By Vehicle Type
7.5.5.2.3. Market Size And Forecast, By Component
7.5.5.3. Africa
7.5.5.3.1. Market Size And Forecast, By Application
7.5.5.3.2. Market Size And Forecast, By Vehicle Type
7.5.5.3.3. Market Size And Forecast, By Component
Chapter 8: Company Profiles
8.1. Continental Ag.
8.1.1. Company Overview
8.1.2. Company Snapshot
8.1.3. Operating Business Segments
8.1.4. Product Portfolio
8.1.5. Business Performance
8.1.6. Key Strategic Moves And Developments
8.2. Robert Bosch Gmbh
8.2.1. Company Overview
8.2.2. Company Snapshot
8.2.3. Operating Business Segments
8.2.4. Product Portfolio
8.2.5. Business Performance
8.2.6. Key Strategic Moves And Developments
8.3. Zf Friedrichshafen
8.3.1. Company Overview
8.3.2. Operating Business Segments
8.3.3. Product Portfolio
8.3.4. Business Performance
8.3.5. Key Strategic Moves And Developments
8.4. Nissan Motor Corporation
8.4.1. Company Overview
8.4.2. Company Snapshot
8.4.3. Product Portfolio
8.4.4. Business Performance
8.4.5. Key Strategic Moves And Developments
8.5. Denso Corporation
8.5.1. Company Overview
8.5.2. Company Snapshot
8.5.3. Operating Business Segments
8.5.4. Product Portfolio
8.5.5. Business Performance
8.5.6. Key Strategic Moves And Developments
8.6. Nexteer Automotive Group Limited
8.6.1. Company Overview
8.6.2. Company Snapshot
8.6.3. Operating Business Segments
8.6.4. Product Portfolio
8.6.5. Business Performance
8.6.6. Key Strategic Moves And Developments
8.7. Kongsberg Automotive
8.7.1. Company Overview
8.7.2. Company Snapshot
8.7.3. Operating Business Segments
8.7.4. Product Portfolio
8.7.5. Business Performance
8.8. Ficosa Corporation (Panasonic Corporation)
8.8.1. Company Overview
8.8.2. Company Snapshot
8.8.3. Operating Business Segments
8.8.4. Product Portfolio
8.8.5. Business Performance
8.8.6. Key Strategic Moves And Developments
8.9. Curtiss-Wright Corporation
8.9.1. Company Overview
8.9.2. Company Snapshot
8.9.3. Operating Business Segments
8.9.4. Business Performance
8.10. Hitachi Automotive Systems, Ltd.
8.10.1. Company Overview
8.10.2. Company Snapshot
8.10.3. Product Portfolio
8.10.4. Business Performance
Li

Executive Summary

According to the report titled 'Drive by Wire Market by Application, Vehicle Type, and Component: Global Opportunity Analysis and Industry Forecast, 2019-2026', the global drive by wire market size was valued at $18.76 billion in 2018, and is projected to reach $35.18 billion by 2026, registering a CAGR of 8.3% from 2019 to 2026.

Asia-Pacific dominates the market, followed by Europe, North America, and LAMEA. China dominated the Asia-Pacific drive by wire market share in 2018 and is expected to grow at a significant rate during the forecast period.

Autonomous vehicles have several advantages over traditional vehicles from improved safety to reduction in fuel and traffic congestion and emissions. An autonomous vehicle is installed with a number of sensors including LiDAR, RADAR, camera, GPS, and drive by wire system. These sensors are short range (providing details of moving objects near the vehicle) as well as long range (providing details of high-speed oncoming vehicles) to help the vehicle sense any object or obstacle in its way, thus eliminating the chances of accidents. Whereas, drive by system electronically controls the functions of vehicle rather than traditional mechanical linkages.

Autonomous vehicles can also help reduce traffic congestion. Based on a study by University of Illinois, it was proved that one autonomous car stuck in a traffic congestion with 20 other human driven cars, can ease the congestion by controlling its pace and hence speed of all the other cars in the jam. However, rise in focus on development of autonomous vehicle is anticipated to propel the growth of the drive by wire market size.

The transportation infrastructure around the globe is evolving remarkably owing to the rapid adoption of Internet of Things (IoT). Companies such as Cisco and IBM have created digital platforms, which can automate street and traffic lights, optimize trash pickup, and augment surveillance. For instance, installation of IoT sensors in Las Vegas streets has managed to control traffic congestion and solve environmental issues. Connected infrastructure includes car parks, toll booths, and Smart Street and traffic lights, which in turn boosts the growth of the autonomous vehicle market and eventually DbW market. Thus, growth of connected infrastructure creates favorable conditions for adoption of autonomous vehicle, which in turn drives the drive by wire market growth.

Top home security manufactures are launching new home security systems with IoT and wireless technologies that allow users to remotely access home security. Addition of such technologies in home security systems result in emergence of new range of smarter home security systems with improved intrusion detection quality. However, adoption of artificial intelligence and deep learning in security systems is expected to deliver advanced level of security and comfort to the customer. Thus, adoption of deep learning and artificial intelligence in home security system is anticipated to provide potential growth opportunities for the players operating in the drive by wire market.

Adoption of drive by wire systems began about 20 years ago, first in military, and later in commercial aircrafts and now in ground transportation sector. Traditional vehicles used hydraulic pressure, cables, and other ways to provide driver with direct and physical control over the direction and speed of the vehicle. Whereas, drive by wire technology uses electronics control to carry out the functioning of brakes, steering, and operate other systems. In addition, the cost of designing, manufacturing, and installing drive by wire system is costly and adds up to the cost of vehicle. Thus, high price associated with drive by wire system is anticipated to hinder the growth of the market.

Rise in development of autonomous vehicles drives the growth of the drive by wire market. In addition, growth of connected infrastructure is anticipated boost the growth of the market. However, high cost of drive by wire system and threat of data hacking and malfunctioning is expected to hinder the drive by wire market share. Furthermore, development of smart cities present remarkable growth opportunities for the key players operating in the market.

Key Findings of the Drive by Wire Market:

Based on application, the park by wire segment is anticipated to grow at a remarkable growth rate during the forecast period.
Based on vehicle type, the passenger car segment was the highest revenue contributor in 2018.
Based on component, actuator is the largest segment in terms of revenue in 2018, and is anticipated to maintain its lead during the forecast period.
Based on region, Asia-Pacific contributed the highest drive by wire market revenue in 2018, followed by Europe, North America, and LAMEA.
The key players analyzed in this drive by wire market report are Continental AG, Robert Bosch GmbH, ZF Friedrichshafen, Nissan Motor Corporation, DENSO Corporation, NEXTEER AUTOMOTIVE GROUP LIMITED, Kongsberg Automotive, Ficosa Corporation (Panasonic Corporation), Curtiss-Wright Corporation, Hitachi Automotive, and others.

Companies Mentioned

  • Continental AG
  • Robert Bosch GmbH
  • ZF Friedrichshafen
  • Nissan Motor Corporation
  • DENSO Corporation
  • NEXTEER AUTOMOTIVE GROUP LIMITED
  • Kongsberg Automotive
  • Ficosa Corporation (Panasonic Corporation)
  • Curtiss-Wright Corporation
  • Hitach

Methodology

The analyst offers exhaustive research and analysis based on a wide variety of factual inputs, which largely include interviews with industry participants, reliable statistics, and regional intelligence. The in-house industry experts play an instrumental role in designing analytic tools and models, tailored to the requirements of a particular industry segment. The primary research efforts include reaching out participants through mail, tele-conversations, referrals, professional networks, and face-to-face interactions.

They are also in professional corporate relations with various companies that allow them greater flexibility for reaching out to industry participants and commentators for interviews and discussions.

They also refer to a broad array of industry sources for their secondary research, which typically include; however, not limited to:

  • Company SEC filings, annual reports, company websites, broker & financial reports, and investor presentations for competitive scenario and shape of the industry
  • Scientific and technical writings for product information and related preemptions
  • Regional government and statistical databases for macro analysis
  • Authentic news articles and other related releases for market evaluation
  • Internal and external proprietary databases, key market indicators, and relevant press releases for market estimates and forecast

Furthermore, the accuracy of the data will be analyzed and validated by conducting additional primaries with various industry experts and KOLs. They also provide robust post-sales support to clients.

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