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About Pentalum
Boost wind farms performance through optical wind remote sensing innovation
• Founded in 2009.
• Headed by experienced entrepreneurs and executive team.
• ABB as a strategic investor
• Development started in June 2010
• Strong team – specializing in Optics, electronics and fast processing for Laser based sensing systems.
• ISO900:2008 and ISO14000 certified.
• Pentalum ramps-up to meet the demand for SpiDAR in 2013 and 2014.
• Members of AWEA and EWEA
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What is a Wind LiDAR (Light Detection And Ranging)
Optical remote sensing technology that can measure the wind profile in several different heights.
Aerosols drifting at the wind speed and direction
Emitted Pulse
Back Reflected Light
200m
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Common Wind LiDARs (Light Detection And Ranging)
s
N
E W
Radial component VR
V’R
Complicate, Delicate, Very (very) Expensive
Coherent LiDARs (Doppler based)
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Pentalum’s Innovation
A low cost, Accurate & low power wind LIDAR based on Direct Detection Technology
Ground Based SpiDAR
The SpiDAR price is less than a 1/5 of any other LiDAR
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The Need for Wind Remote Sensing
• Accurate wind measurements are fundamental to the success of wind farm project.
• The uncertainty decrease by collecting high quality wind data from numerous points throughout the site and at appropriate heights.
This is difficult and expensive to achieve with traditional met masts
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The Advantages of the Ground Based SpiDAR
• Deploy a met towers is
• Expensive & Hard to maintain
• Time consuming
• Permit issues
• Land owner issues
• Require FAA lighting
• Pentalum SpiDAR is
• Portable, easy to deploy
• No permit required
• Accurate measurement between 30-200m
• Easy to maintain
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Available Services
• Uniquely designed Power Pack
• A web based application to provide analyzed wind data and tools for remotely monitor and control the SpiDAR fleet
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Deployments and Reliability
Highly reliable solution
• So far: ~18 months of accumulated operation of the
SpiDAR in the field
• About 50 units built and operated in the field worldwide
• Operation in a wide temp range of -25°C to +45°C
• Worked under fog, dust, low clouds, rain, snow and hail.
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Resource Assessments Using Multiple SpiDARs
• Deploy one or many SpiDAR sensor to reduce the uncertainty
• The 1 year clock is started ticking …
• Once you have a permit, Add a small Met mast (50-60m) for 3-6 months of measurements parallel to the SpiDAR systems
50-60m Small met mast
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The Value of Accurate Wind Measurements
• Accurate measurements reduces the uncertainty in predicting how much power the wind farm will produce over its 20 years operation lifetime
• Up to 6%** decrease in measurements uncertainties ($4.5M in NPV)*
• High resolution wind speed measurements are needed for accurate siting and type selection of the wind turbines in the field
• Up to 5%** increase in wind farm total output power by better micro-siting (1% is equal to $2M/year for a typical 100MW WF).
* Estimations done by GENIVAR
** Estimations done by Garrad Hassan consulting
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SpiDAR for Wind Turbine Control
Provides a real-time, accurate measure of the head wind to allow the turbine to better face the wind and prepare for wind shear and sudden wind gusts, and reduce loads.
~200m
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Israel - Golan Heights – Samples
Shear Reversed Shear
No Shear
Veer
Reuven Shenkar
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Israel - Golan Heights – Low Level Jet
Reuven Shenkar
Hall A B-24
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Ground Based SpiDAR Sample of Deployments
Sweetwater TX
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Sweetwater TX
Ground Based SpiDAR Sample of Deployments