NOAA pays smallsat company PlanetiQ $60 million for its weather data

Capitalism in space: NOAA today awarded the smallsat company PlanetiQ a $60 million contract to provide the agency weather data from the company’s planned constellation of 20 satellites.

At present two satellites are in orbit, with more scheduled for launch in 2024. The satellites use data obtained in orbit from the different GPS-type satellite constellations to determine the atmosphere’s temperature, pressure, humidity and electron density.

In 2018 NOAA had awarded PlanetiQ and two other commercial companies, Spire and GeoOptics, small developmental contracts. This appears to be the first full contract, and continues NOAA’s very slow shift from building its own weather satellites to buying data from commercial satellites built by private companies. The agency has resisted this change, but since it can’t get its own satellites built and launched on budget or on time, it is increasingly being forced to do so.

India wins contract to launch private weather satellites

The competition heats up: The first two satellites in the first private weather satellite constellation will be launched on India’s PSLV rocket.

With 12 satellites on orbit, PlanetiQ will collect approximately 34,000 “occultations” per day, evenly distributed around the globe with high-density sampling over both land and water. Each occultation is a vertical profile of atmospheric data with very high vertical resolution, comprised of measurements less than every 200 meters from the Earth’s surface up into the ionosphere. The data is similar to that collected by weather balloons, but more accurate, more frequent and on a global scale.

“The world today lacks sufficient data to feed into weather models, especially the detailed vertical data that is critical to storm prediction. That’s why we see inaccurate or ambiguous forecasts for storms like Hurricane Joaquin, which can put numerous lives at risk and cost businesses millions of dollars due to inadequate preparation or risk management measures,” McCormick said. “Capturing the detailed vertical structure of the atmosphere from pole to pole, especially over the currently under-sampled oceans, is the missing link to improving forecasts of high-impact weather.”

This project is a win-win for aerospace. Not only will this weather constellation help shift ownership of weather satellites from government to private ownership, the company’s decision to use India’s PSLV rocket increases the competition in the launch industry.