About Nacelle Mounted LIDAR Systems Market for Wind Industry Nacelle LIDAR is used to measure the wind speed and the direction of the wind directly ahead of the turbine. Although it is installed on the nacelle, it can measure the wind without being affected by the turbine. The main purpose of the installing nacelle LIDAR is for integration for turbine control and as a retrofit for independently measuring and optimizing the performance of the turbine to increase the AEP. Technavio’s analysts forecast the global nacelle mounted LIDAR systems market for wind industry to grow at a CAGR of 6.76% during the period 2017-2021. Covered in this report The report covers the present scenario and the growth prospects of the global nacelle mounted LIDAR systems market for wind industry for 2017-2021. To calculate the market size, the report considers the revenue that were generated from the sale of the nacelle mounted LIDAR products in the wind sector. The market is divided into the following segments based on geography: • Americas • APAC • EMEA Technavio's report, Global Nacelle... Research Beam Model: Research Beam Product ID: 1042169 2500 USD New
Global Nacelle-Mounted Systems for Wind Industry 2017-2021
 
 

Global Nacelle-Mounted Systems for Wind Industry 2017-2021

  • Category : Energy and Power
  • Published On : December   2016
  • Pages : 64
  • Publisher : Technavio
 
 
 
About Nacelle Mounted LIDAR Systems Market for Wind Industry
Nacelle LIDAR is used to measure the wind speed and the direction of the wind directly ahead of the turbine. Although it is installed on the nacelle, it can measure the wind without being affected by the turbine. The main purpose of the installing nacelle LIDAR is for integration for turbine control and as a retrofit for independently measuring and optimizing the performance of the turbine to increase the AEP.

Technavio’s analysts forecast the global nacelle mounted LIDAR systems market for wind industry to grow at a CAGR of 6.76% during the period 2017-2021.

Covered in this report
The report covers the present scenario and the growth prospects of the global nacelle mounted LIDAR systems market for wind industry for 2017-2021. To calculate the market size, the report considers the revenue that were generated from the sale of the nacelle mounted LIDAR products in the wind sector.

The market is divided into the following segments based on geography:
• Americas
• APAC
• EMEA

Technavio's report, Global Nacelle Mounted LIDAR Systems Market for Wind Industry 2017-2021, 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
• Leosphere
• SgurrEnergy
• Windar Photonics
• ZephIR Lidar
Other prominent vendors
• Epsiline
• Pentalum Technologies
• AXYS Technologies
• Avent Lidar Technology
• Mitsubishi Electric
Market driver
• Growing adoption of LIDAR technology
• For a full, detailed list, view our report

Market challenge
• High cost of implementation
• For a full, detailed list, view our report

Market trend
• Favorable policy environment for energy transition
• For a full, detailed list, view our report

Key questions answered in this report
• What will the market size be in 2021 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.




Table of Contents
PART 01: Executive summary
PART 02: Scope of the report
• Market overview
• Top-vendor offerings
PART 03: Market research methodology
• Research methodology
• Economic indicators
PART 04: Introduction
• Key market highlights
• Technology overview
PART 05: Market landscape
• Market size and forecast
• Five forces analysis
PART 06: Market segmentation by application
• Global nacelle mounted LIDAR systems for wind industry by application
• Global nacelle mounted LIDAR systems for wind industry by offshore application
• Global nacelle mounted LIDAR systems for wind industry by onshore application
PART 07: Geographical segmentation
• Global nacelle mounted LIDAR systems for wind industry by geography
• Nacelle mounted LIDAR systems for wind industry in EMEA
• Nacelle mounted LIDAR systems for wind industry in Americas
• Nacelle mounted LIDAR systems for wind industry in APAC
PART 08: Market drivers
• Need for effective turbine performance management
• Growing adoption of LIDAR technology
• Increase in hub height
PART 09: Impact of drivers
PART 10: Market challenges
• High cost of implementation
• Competition from fossil fuels
• Functional issues associated with nacelle LIDARs
PART 11: Impact of drivers and challenges
PART 12: Market trends
• Favorable policy environment for energy transition
• Rise in offshore installations
PART 13: Vendor landscape
• Competitive scenario
• Other prominent vendors
PART 14: Key vendor analysis
• Leosphere
• SgurrEnergy
• Windar Photonics
• ZephIR Lidar
PART 15: Appendix
• List of abbreviations
PART 16: Explore Technavio
List of Exhibits
Exhibit 01: Key countries in each region
Exhibit 02: Product offerings
Exhibit 03: Wind turbine components
Exhibit 04: Market overview
Exhibit 05: Wind farm performance measurement solutions
Exhibit 06: Global nacelle mounted LIDAR systems for wind industry 2016-2021 ($ millions)
Exhibit 07: Uncertainty of MET towers
Exhibit 08: Five forces analysis
Exhibit 09: Global nacelle mounted LIDAR systems for wind industry by application 2016-2021 (%)
Exhibit 10: Global nacelle mounted LIDAR systems for wind industry by application ($ millions)
Exhibit 11: Global nacelle mounted LIDAR systems for wind industry by offshore application ($ millions)
Exhibit 12: Onshore and offshore wind generation cost comparison ($ per MWh)
Exhibit 13: Global nacelle mounted LIDAR systems for wind industry by onshore application ($ millions)
Exhibit 14: Global nacelle mounted LIDAR systems for wind industry by geography 2016-2021 (%)
Exhibit 15: Global nacelle mounted LIDAR systems for wind industry by geography 2016-2021 ($ millions)
Exhibit 16: Nacelle mounted LIDAR systems for wind industry in EMEA ($ million)
Exhibit 17: Nacelle mounted LIDAR systems for wind industry in Americas ($ million)
Exhibit 18: Nacelle mounted LIDAR systems for wind industry in APAC ($ millions)
Exhibit 19: Yaw misalignment and the degree of impact on power generation
Exhibit 20: AEP correction and its economic benefit (increasing AEP by 1.8%)
Exhibit 21: Wind LIDAR technology comparison with MET mast
Exhibit 22: Impact of rotor diameter, turbine size, and hub height on annual wind energy production
Exhibit 23: Evolution of wind turbine size 1980-2011
Exhibit 24: Met Mast location and nacelle LIDAR beam coverage
Exhibit 25: Impact of drivers
Exhibit 26: Global electricity generation by source and wind power generation share in global electricity generation 2001-2015 (%)
Exhibit 27: Impact of drivers and challenges
Exhibit 28: New wind installation targets by 2020 (GW)
Exhibit 29: Cumulative world offshore wind installation capacity 2006-2015 (MW)
Exhibit 30: Other prominent vendors
Exhibit 31: Product offerings of Leosphere
Exhibit 32: Key product offerings of SgurrEnergy
Exhibit 33: Product offerings of SgurrEnergy
Exhibit 34: Product offerings of Windar Photonics
Exhibit 35: Product offerings of Windar Photonics
Exhibit 36: Product offerings of ZephIR Lidar
Exhibit 37: Product offerings of ZephIR Lidar

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