Global Automotive Pedestrian Protection System Market 2016-2020

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Date: 26-Sep-2016
No. of pages: 85
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There are multiple underlying technologies which comprise the entire domain of PPS. These include driver warning, brake assist, automatic braking and collision avoidance, external airbags, 'pop-up' bonnets, and advanced energy-absorbing materials.

However, by broad technology, PPS may be classified as:


  • Active PPS or pedestrian avoidance systems

  • Passive PPS or pedestrian damage control systems


This analyst forecast the global automotive pedestrian protection system market to grow at a CAGR of 33.29% during the period 2016-2020.

Covered in this report

This report covers the present scenario and the growth prospects of the global automotive pedestrian protection system market for 2016-2020. To calculate the market size, the report considers a top down approach, wherein our in-house databases have been used to arrive at the PPS market.

The market is divided into the following segments based on geography:


  • APAC

  • Europe

  • North America

  • ROW


The report, Global Automotive Pedestrian Protection System Market 2016-2020, has been prepared based on an in-depth market analysis with inputs from industry experts. This report covers the market landscape and its growth prospects over the coming years. The report also includes a discussion of the key vendors operating in this market.

Key vendors


  • Nissan

  • Volvo

  • Audi

  • Toyota

  • Ford

  • Honda

  • Mercedes Benz

  • BMW

  • Subaru


Other prominent vendors


  • Denso

  • Delphi

  • Hitachi Automotive

  • Clarion

  • Valeo

  • Magna International


Market driver


  • Regulatory and infrastructural drivers for PPS adoption

  • For a full, detailed list, view our report


Market challenge


  • Current PPS offerings are only effective at low speeds, thus negating their use in high-speed car-to-pedestrian collisions

  • For a full, detailed list, view our report


Market trend


  • Computer/synthetic vision systems to be used in PPS

  • For a full, detailed list, view our report


Key questions answered in this report


  • What will the market size be in 2020 and what will the growth rate be?

  • What are the key market trends?

  • What is driving this market?

  • What are the challenges to market growth?

  • Who are the key vendors in this market space?

  • What are the market opportunities and threats faced by the key vendors?

  • What are the strengths and weaknesses of the key vendors?

Global Automotive Pedestrian Protection System Market 2016-2020

Table of Contents

PART 01: Executive summary
Highlights

PART 02: Scope of the report
Market overview
Report coverage
Product and market definitions

PART 03: Market research methodology
Research methodology
Economic indicators

PART 04: Introduction
Key market highlights
Value chain analysis
Product life cycle (PLC)
Regulatory frameworks governing PPS

PART 05: Market landscape
Market overview
PPS system dependencies: Sensor architecture
Market size and forecast
Five forces analysis

PART 06: Market segmentation by technology
Market overview
Market size and forecast

PART 07: Market segmentation by geography
Market overview
Market size and forecast

PART 08: Market drivers
Consumer behavior drivers: Causes of rising pedestrian deaths
Regulatory and infrastructural drivers for PPS adoption
Technological and OEM-specific drivers for PPS system adoption

PART 09: Technological challenges

PART 10: Technological trends

PART 11: Convergence of ideas: The mega-trends
Impact of driverless car technology development on PPS
Communication between PPS systems and cell-phone networks
Relationship of PPS with other technologies
Path to convergence on the autonomous vehicle roadmap

PART 12: Vendor landscape
Competitive benchmarking: OEMs
Other prominent OEMs
Competitive benchmarking - Suppliers
Other prominent suppliers

PART 13: Key vendor analysis: OEMs

PART 14: Key vendor analysis: Suppliers
Product portfolios of key suppliers in the PPS market

PART 15: Appendix
List of abbreviations

List of Exhibits

Exhibit 01: Report coverage
Exhibit 02: Definitions of some terms used in this report
Exhibit 03: Various aspects of the global automotive pedestrian protection system market
Exhibit 04: Active PPS - working
Exhibit 05: Passive PPS - primary parts
Exhibit 06: Mapping of injury causes and body parts concerned
Exhibit 07: High level value chain structure for PPS
Exhibit 08: Detailed level value chain structure for PPS
Exhibit 09: Life cycle of automotive PPS 2016
Exhibit 10: Existing regulatory framework around the world governing PPS
Exhibit 11: List of common NCAPs worldwide
Exhibit 12: Government and transport authorities' initiatives on safety
Exhibit 13: Market landscape: Automotive PPS
Exhibit 14: Summary of sensors used for pedestrian detection
Exhibit 15: Global automotive PPS market 2016-2020 ($ billions)
Exhibit 16: Global automotive ADAS market 2016-2020 ($ billions)
Exhibit 17: Composition of the global automotive ADAS market 2016-2020
Exhibit 18: PPS as a part of the global automotive ADAS market 2016-2020
Exhibit 19: Five forces analysis: PPS
Exhibit 20: PPS systems classification by technology
Exhibit 21: Adoption ranges of PPS systems technologies
Exhibit 22: Global automotive active PPS market 2016-2020 ($ millions)
Exhibit 23: Global automotive passive PPS market 2016-2020 ($ billions)
Exhibit 24: Global automotive PPS market by geography 2016-2020 ($ millions)
Exhibit 25: Global causes of motor vehicle fatalities 2015
Exhibit 26: Global causes of pedestrian deaths 2014
Exhibit 27: Pedestrian deaths as a percentage of total traffic deaths in US
Exhibit 28: Global pedestrian fatality across key countries for PPS
Exhibit 29: Euro NCAP star rating scoring criteria
Exhibit 30: Euro NCAP rating criteria weightages
Exhibit 31: Seven reasons behind heaviness and lower fuel economy for PPS equipped cars
Exhibit 32: Increase in braking distance with respect to speed
Exhibit 33: Active hood system: Working
Exhibit 34: Active hood system: Impact areas
Exhibit 35: Active hood equipped vehicles 2006 to 2014
Exhibit 36: Pedestrian highlighting with computer vision
Exhibit 37: Simple algorithmic decision tree for driverless cars
Exhibit 38: Sample driverless car decision tree for PPS
Exhibit 39: PPS and connected car technologies tie-up
Exhibit 40: PPS and cell phone networks tie-up
Exhibit 41: V2P communication protocols
Exhibit 42: Interactive AR system
Exhibit 43: Timeline showing evolution of ADAS systems
Exhibit 44: CA system classification
Exhibit 45: BSD systems
Exhibit 46: Automotive camera modules design
Exhibit 47: A vehicle with surround view system
Exhibit 48: Laser headlights in CA warning systems
Exhibit 49: Laser headlights used for spotlighting pedestrians
Exhibit 50: Qualitative analysis of OEMs in the PPS market
Exhibit 51: AEB commitment signatories - March 2016
Exhibit 52: Qualitative analysis of suppliers in the PPS market
Exhibit 53: Other prominent suppliers in PPS market
Exhibit 54: Nissan ITS workflow
Exhibit 55: Nissan multi sensing system
Exhibit 56: Ford PCAPD system
Exhibit 57: Honda PCMSS
Exhibit 58: PPS suppliers' product portfolio

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