This white paper describes the OpenLidar initiative for collaborative research on wind lidar hardware and software. We welcome feedback. Please see https://github.com/IEA-Wind-Task-32/white-paper-openLidar for ways you can get in touch with us.This version has been published to obtain feedback and may be subject to revision. Readers are encouraged to check for more recent versions of this document
IEA Wind Task 32 on wind lidar for wind energy applications is planning a new phase, starting in 202...
The 15 Early Stage Researchers (ESRs) in the LIKE project investigate topics in which wind lidar pla...
Wind lidar is one of the biggest changes to occur in wind energy in recent decades. The use of laser...
This white paper describes the IEA Wind Task 32 collaborative research program on wind lidar. We we...
To enable collaboration across the worldwide wind lidar community, we propose a platform for the ope...
Wind lidar technology has been increasingly used for wind energy applications for over a decade. Dur...
Wind lidars allow new approaches to building and operating wind plants but also generate huge amount...
IEA Wind Task 32 exists to identify and mitigate barriers to the adoption of lidar for wind energy a...
IEA Wind Task 32 exists to identify and mitigate barriers to the adoption of lidar for wind energy a...
IEA Wind Task 32 exists to identify and mitigate barriers to the adoption of lidar for wind energy a...
IEA Wind Task 32 coordinates a range of research and development activities for wind lidar for wind ...
Stuttgart Wind Energy (SWE) is a research institute at the University of Stuttgart dedicated to wind...
In this report we present results of the e-WindLidar project, which aimed to provide basis for adopt...
These are the minutes for Workshop 16 on "The digitalisation of wind lidar", held on 17 March 2021. ...
The use of nacelle lidar measurements for wind turbine control applications has been widely studied ...
IEA Wind Task 32 on wind lidar for wind energy applications is planning a new phase, starting in 202...
The 15 Early Stage Researchers (ESRs) in the LIKE project investigate topics in which wind lidar pla...
Wind lidar is one of the biggest changes to occur in wind energy in recent decades. The use of laser...
This white paper describes the IEA Wind Task 32 collaborative research program on wind lidar. We we...
To enable collaboration across the worldwide wind lidar community, we propose a platform for the ope...
Wind lidar technology has been increasingly used for wind energy applications for over a decade. Dur...
Wind lidars allow new approaches to building and operating wind plants but also generate huge amount...
IEA Wind Task 32 exists to identify and mitigate barriers to the adoption of lidar for wind energy a...
IEA Wind Task 32 exists to identify and mitigate barriers to the adoption of lidar for wind energy a...
IEA Wind Task 32 exists to identify and mitigate barriers to the adoption of lidar for wind energy a...
IEA Wind Task 32 coordinates a range of research and development activities for wind lidar for wind ...
Stuttgart Wind Energy (SWE) is a research institute at the University of Stuttgart dedicated to wind...
In this report we present results of the e-WindLidar project, which aimed to provide basis for adopt...
These are the minutes for Workshop 16 on "The digitalisation of wind lidar", held on 17 March 2021. ...
The use of nacelle lidar measurements for wind turbine control applications has been widely studied ...
IEA Wind Task 32 on wind lidar for wind energy applications is planning a new phase, starting in 202...
The 15 Early Stage Researchers (ESRs) in the LIKE project investigate topics in which wind lidar pla...
Wind lidar is one of the biggest changes to occur in wind energy in recent decades. The use of laser...