Building on more than 35 years of experience, NRG designs complete systems and instruments that work together seamlessly and suit a variety of climates, terrains, and applications. Our decision support tools provide the data critical for successfully planning your wind or solar energy project from start to finish.
Wind Resource Assessment
Building on more than 30 years of experience, NRG designs complete systems and instruments that work together seamlessly and suit a variety of climates, terrains, and applications.
Wind Plant Optimization
Our turbine control sensors and Lidar technology provide the data you need to maximize the profitability of your project.
Well-suited for solar monitoring applications, NRG's sensors, data loggers, and met systems provide the data you need to maximize the performance of your project.
Solar Resource Assessment
Our solar resource assessment product portfolio offers a complete toolkit for the utility-scale photovoltaic project developer.
NRG Systems' Lidar solutions are ideal for a range of professional weather enterprise applications, including air quality management, weather intelligence and extreme weather detection, aviation, aerospace, and research.
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White Paper: Wind Iris Operational Applications
Wind farm profitability is strongly impacted by an operator’s ability to assess the performance of individual turbines and use this information to optimize a wind turbine fleet as a whole. Increasingly, the Wind Iris nacelle-mounted Lidar is being used to perform this critical assessment. Because the Wind Iris is mobile, easy-to-install, and suitable for a variety of applications, it is earning a well deserved reputation as a unique and highly valuable diagnostic tool for turbine performance characterization and optimization.
WINDCUBE and FCR test in Hrgud, Bosnia and Herzegovina
The aim of this project was to assess the accuracy of this correction by comparing the corrected Lidar measurements to the uncorrected measurements and to simultaneous measurements taken by cup anemometers on a met mast.