Europe Inertial Systems Market - By Equipment, Grade , Geography, Trends, Forecast - 2017 - 2022

  • ID: 4389491
  • Report
  • Region: Europe
  • 91 pages
  • Mordor Intelligence
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The Europe Inertial Systems Market is valued at USD 1.21 billion in 2016 and is expected to reach a value of USD 2.59 billion by the end of 2022, growing at a projected CAGR of 12.88% during the forecast period of 2017 - 2022. In 2012, the production of passenger cars in Europe was nearly 15 million which represented more than 23% of the total passenger cars produced in the world. Automobile is one of the big industries in Europe. Big giants of automobile industry are from this region like Audi, Skoda, BMW, Mercedes, and VW. A lot of technological innovations in the automobile industry occur in this area. Inertial sensors are very important part of the automobiles these days. They are used in various systems ranging from ABS to air-bag deployment and even in anti-theft features. The automotive industry growth in this region will help the inertial systems market to grow.

Inertial system equipment includes gyroscopes, accelerometers, inertial measurement units, inertial navigation systems and multi-axis sensors. A comprehensive overview of the market for these systems over the period 2016 - 2021 has been given in this report. It segments the market by area of application with an in-depth analysis of every segment in each area. Aerospace, land-based, marine and subsea applications are explained with comprehensive market analysis of each segment.

The advancement of global lifestyle has resulted in the need for equipment with greater ease of use. This has enabled the use of motion sensing technology which uses inertial sensors extensively. This is a key driving factor to this market and will play an important role in defining the market for the next few years.

The report delves into the impact of the rise of unmanned vehicles: aerial, land and water based, and on the use of inertial sensors. The unprecedented rise in unmanned vehicles across various applications in both civilian and defense applications has increased the need for complex navigational systems that include inertial sensors. The rapid advancement in technology has made sensors both accessible and affordable which has made their use abundant in day-to-day devices.

An extensive overview of the different grades of inertial sensors: navigational, tactical, industrial and automotive is also given. The key differences among them are explained and their market based on application is provided. Defense industry takes the major share of the market with applications like missile guidance, control and targeting, precision guided munitions, tank turret stabilization and torpedo guidance. The other primary industries where these systems are used are industrial manufacturing, energy and infrastructure, transportation and aviation.

An analysis of the key players in the market has been provided with an outlook on the competitive landscape and an insightful outlook for the investors.

DRIVERS

The rapid rise of unmanned vehicles in both defense and civilian applications

Technological advancement enabling more effective components at a smaller and lighter size

Increasing applications based on motion sensing

RESTRAINTS

Integration drift error is a major concern in navigation systems

Substantial increase in computing complexity

Complex nature of integration in existing systems and need for ancillary components

Key Deliverables:

Market analysis for the Europe inertial systems market, with region-specific assessments and competition analysis on a global and regional scale.

Market definition along with the identification of key drivers and restraints.

Identification of factors instrumental in changing the market scenario, rising prospective opportunities, and identification of key companies that can influence this market on a global and regional scale.

Extensively researched competitive landscape section with profiles of major companies along with their market share.

Identification and analysis of the macro and micro factors that affect the Europe inertial systems market on both global and regional scale.

A comprehensive list of key market players along with the analysis of their current strategic interests and key financial information.

A wide-ranging knowledge and insights about the major players in this industry and the key strategies adopted by them to sustain and grow in the studied market.

Insights into the major countries/regions where this industry is growing and also identify the regions that are still untapped.
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1. INTRODUCTION
1.1 Research Methodology
1.1.1 Definition of the Market
1.1.2 Report Description
1.1.3 Executive Summary
2. KEY FINDINGS OF THE STUDY
3. MARKET OVERVIEW
3.1 Market Segmentation
3.2 Overview
3.3 Industry Value-Chain Analysis
3.4 Industry Attractiveness - Porter's Five Forces Analysis
4. MARKET DYNAMICS
4.1 Introduction
4.2 Drivers
4.2.1 The Rapid Rise of Unmanned Vehicles in Both Defense and Civilian Applications
4.2.2 Technological Advancement Enabling More Effective Components at a Smaller and Lighter Size
4.2.3 Increasing Applications Based on Motion Sensing
4.3 Constraints
4.3.1 Integration Drift Error is a Major Concern in Navigation Systems
4.3.2 Substantial Increase in Computing Complexity
4.3.3 Complex Nature of Integration in Existing Systems and Need for Ancillary Components
5. Technology Overview
5.1 Technology Snapshot
5.2 Industry Applications
6. Different Types of Inertial Sensors
6.1 Gyroscopes
6.2 Accelerometers
6.3 Inertial Measurement Units
6.4 GPS/INS
6.5 Multi-Axis Sensors
7. MARKET ANALYSIS AND FORECAST
7.1 Europe Market Segmented by Equipment
7.1.1 Gyroscopes
7.1.2 Accelerometers
7.1.3 Inertial Measurement Units
7.1.4 GPS/INS
7.1.5 Mult- Axis Sensors
7.2 Europe Market Segmented by Grade
7.2.1 Navigational
7.2.2 Tactical
7.2.3 Industrial
7.2.4 Automotive
7.3 Europe Market Segmented by Area of Application
7.3.1 Aerospace
7.3.1.1 UAV Navigation
7.3.1.2 Avionics
7.3.1.3 Flight Analysis
7.3.1.4 Antenna Tracking
7.3.1.5 Camera Orientation
7.3.2 Land
7.3.2.1 Automotive Navigation
7.3.2.2 Unmanned Ground Vehicles
7.3.2.3 Machine Control
7.3.2.3.1 Construction
7.3.2.3.2 Precision Agriculture
7.3.2.3.3 Mining & Grooming
7.3.2.4 Mobile Mapping
7.3.2.5 Antenna Tracking
7.3.3 Marine
7.3.3.1 Hydrography
7.3.3.2 Ship Motion
7.3.3.3 Buoys
7.3.3.4 Performance Sailing
7.3.3.5 Offshore
7.3.4 Subsea
7.3.4.1 Remotely Operated Vehicles
7.3.4.2 Autonomous Underwater Vehicles
7.3.5 Others
7.3.5.1 Indoor Positioning
7.3.5.2 Virtual Reality
7.4 Europe Market Segmented by Industry
7.4.1 Industrial OEM
7.4.1.1 Robotic Control
7.4.1.2 Antenna Stabilization
7.4.1.3 Camera Stabilization
7.4.2 Defense
7.4.2.1 Unmanned Aerial Vehicles
7.4.2.2 Defense Fixed Wing
7.4.2.3 Defense Helicopter
7.4.2.4 Missile Guidance & Control
7.4.2.5 Missile Targeting
7.4.2.6 Precision Guided Munitions
7.4.2.7 Precision UGV
7.4.2.8 Tank Turret Stabilization
7.4.2.9 Torpedo Guidance
7.4.2.10 Spacecraft
7.4.3 Energy & Infrastructure
7.4.3.1 Inertial Systems for Platform Stabilization
7.4.3.2 Wind Turbine Control
7.4.4 Transportation
7.4.4.1 MEMS Ride Control
7.4.4.2 Automotive Testing
7.4.5 Civil Aviation
7.4.5.1 General Aviation
7.4.5.2 Commercial Aviation
7.4.5.3 Unmanned Aerial Vehicles
8. Competitive Landscape
8.1 Mergers & Acquisitions
8.2 Joint Ventures
8.3 New Product Launches
8.4 Five Biggest Companies by Revenue
8.5 Two Most Active Companies in the Past Three Years
9. Company Profiles
9.1 Aeron
9.1.1 Overview
9.1.2 Major Products and Services
9.1.3 Financials
9.1.4 Recent Developments
9.2 MEMSIC
9.2.1 Overview
9.2.2 Major Products and Services
9.2.3 Financials
9.2.4 Recent Developments
9.3 Systron Donner
9.3.1 Overview
9.3.2 Major Products and Services
9.3.3 Financials
9.3.4 Recent Developments
9.4 Trimble Navigation
9.4.1 Overview
9.4.2 Major Products and Services
9.4.3 Financials
9.4.4 Recent Developments
9.5 Lord Microstain
9.5.1 Overview
9.5.2 Major Products and Services
9.5.3 Financials
9.5.4 Recent Developments
9.6 Vectornav Technologies
9.6.1 Overview
9.6.2 Major Products and Services
9.6.3 Financials
9.6.4 Recent Developments
9.7 Systron Donner Inertial
9.7.1 Overview
9.7.2 Major Products and Services
9.7.3 Financials
9.7.4 Recent Developments
9.8 L3 Communications
9.8.1 Overview
9.8.2 Major Products and Services
9.8.3 Financials
9.8.4 Recent Developments
9.9 Ixblue
9.9.1 Overview
9.9.2 Major Products and Services
9.9.3 Financials
9.9.4 Recent Developments
9.10 Honeywell
9.10.1 Overview
9.10.2 Major Products and Services
9.10.3 Financials
9.10.4 Recent Developments
9.11 SBG Systems
9.11.1 Overview
9.11.2 Major Products and Services
9.11.3 Financials
9.11.4 Recent Developments
9.12 Tyndall
9.12.1 Overview
9.12.2 Major Products and Services
9.12.3 Financials
9.12.4 Recent Developments
9.13 Moog
9.13.1 Overview
9.13.2 Major Products and Services
9.13.3 Financials
9.13.4 Recent Developments
9.14 Xsens
9.14.1 Overview
9.14.2 Major Products and Services
9.14.3 Financials
9.14.4 Recent Developments
9.15 Sagem
9.15.1 Overview
9.15.2 Major Products and Services
9.15.3 Financials
9.15.4 Recent Developments
10. Appendix
10.1 Abbreviations
10.2 Sources
10.3 Bibliography
10.4 Disclaimer
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