Orlando Sentinel

For drone deliveries to fly, micro-weather info is key

- By Thomas Black

Imagine a weather report so precise it provides wind-gust forecasts for individual city blocks. Such micro-weather data may soon become a reality-and a necessity for future fleets of delivery drones.

As Amazon.com, United Parcel Service, Domino’s and others gear up to launch autonomous drone deliveries of books, pills, and pizza, companies are realizing it’s the quality of hyperlocal weather data more than anything else that will steer their packages around storm clouds and through wind-buffeted urban canyons.

“The weather issue is a very significan­t one,” said Sean Cassidy, director of safety and regulatory affairs for Amazon’s drone unit. “We don’t have anything at the level of granularit­y that you would need to operate.”

The push is on to develop traffic-management systems that will forecast weather conditions down to a single city block, and at elevations as low as 400 feet. That promises to clear the way for the holy grail of drone service: automatic flights that make their rounds without pilots controllin­g them from the ground as they do now.

And it’s becoming clear that delivery drones themselves will play an increasing­ly important role in collecting weather conditions on their journeys through the sky, relaying that informatio­n to computer weather models and perhaps back to fleets of drones following behind.

Aviation weather reports are currently designed to cover mostly areas around airports, as well as the high altitudes where airplanes tend to fly. That’s why existing systems are so illequippe­d to help guide the thousands of small drone craft that are envisioned taking off and landing from diverse locales.

Weather reports for drones will rely on multilayer­ed systems of groundbase­d weather gauges, sensors on the drones themselves and data from national weather services, all feeding computer models, said Marcus Johnson, a research aerospace engineer at the NASA Ames Research Center at Moffett Field, Calif. “It’s not an easy solution,” he said.

Nor will such technology come cheap. An instrument that records six variables, including wind speed, wind direction, and humidity costs about $2,500, according to sensor manufactur­ers. That doesn’t include installati­on, maintenanc­e, and sending the collected data over the internet.

Meteorolog­ists dream of having sensors cover every square mile drones fly over, but doing so could be prohibitiv­ely expensive, said Jon Tarleton, chief of weather marketing in the Americas for Finland’s Vaisala, which manufactur­es most of the sensors used by the Federal Aviation Administra­tion at airports.

“The problem is solvable in almost all cases. It just comes down to cost,” said Tarleton, whose company makes the weather balloons the National Weather Service sets loose each day to compile the national forecast.

Urban areas present some of the greatest challenges. Tall buildings create channels of wind that can clash and swirl into tight eddies, said Matthias Steiner, deputy director for the National Center for Atmospheri­c Research’s Aviation Applicatio­ns Program. Sun-baked sidewalks opposite shaded ones just across a street can produce uneven heat waves, causing unpredicta­ble downdrafts and updrafts. Weather patterns in cities on coastlines or at the foot of mountains can also wreak havoc.

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