Global Automotive Pedestrian Protection System Market 2016-2020


◆タイトル:Global Automotive Pedestrian Protection System Market 2016-2020
◆調査・発行会社:Technavio (Infiniti Research Ltd.)
◆資料形式:PDF / 英語
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About PPS
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

Technavio’s analysts 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]
The 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:
• Europe
• North America

Technavio’s report, Global Automotive Pedestrian Protection System Market 2016-2020, has been prepared based on an in-depth market analysis with inputs from industry experts. The 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
• 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?

※You can request one free hour of our analyst’s time when you purchase this market report. Details are provided within the report.


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

PART 16: Explore Technavio

[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


Nissan, Volvo, Audi, Toyota, Ford, Honda, Mercedes Benz, BMW, Subaru, Denso, Delphi, Hitachi Automotive, Clarion, Valeo, Magna International.





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