FAA says Air Traffic Control isn’t Ready for UAS

The Federal Aviation Administration is facing significant problems with integrating UASinto US airspace. The AP reports that plans for modernizing air traffic control can’t cover the unique challenges posed by unmanned aerial vehicles (UAVs), given that they were made years before UAVs were used for more than military missions. “It’s becoming painfully apparent that in order to get [drones] in there, there is going to have to be a fair amount of accommodation, at least in the beginning,” National Air Traffic Controllers Association representative Chris Stephenson is quoted as saying.

That’s going to add yet another set of goals for NextGen, an FAA programme that promises to create a nationwide satellite-based location tracking system, provide better tools for sharing information, and update aging technology. Launched in 2004, NextGen has made progress on these projects, but it’s also been consistently over budget and behind schedule. And large drones — which are currently mostly used for surveillance but could also carry commercial cargo or even wireless internet signals — throw a wrench in its current plans. “We didn’t understand the magnitude to which [drones] would be an oncoming tidal wave, something that must be dealt with, and quickly,” says NextGen administrator Ed Bolton.

Congress passed legislation creating NextGen in 2003, and directed the agency to accommodate all types of aircraft, including drones.

The programme, which is not expected to be completed for at least another decade, is replacing radar and radio communications, technologies rooted in the early 20th century, with satellite-based navigation and digital communications.

The FAA has spent more than $5 billion on the complex programme and is nearly finished installing hardware and software for several key systems. But the further it progresses, the more difficult it becomes to make changes.

Government and industry officials have long maintained that drones must meet the same rules that apply to manned aircraft if they are to share the sky. That is changing, however, said Chris Stephenson, who represents the National Air Traffic Controllers Association on several U.S. and international unmanned aircraft committees.

“It’s becoming painfully apparent that in order to get (drones) in there, there is going to have to be a fair amount of accommodation, at least in the beginning,” he said.

Michael Whitaker, the FAA’s deputy administrator, acknowledged that drones “weren’t really part of the equation when you go back to the origin of NextGen.”

The NextGen plans for the next five years do not address how drones will fit into a system designed for planes with pilots on board, but the agency will have to consider whether to do that, Whitaker told a recent meeting of the NextGen Institute, a nonprofit association sponsored by the FAA so that industry can assist with research.

Most of the initial demand to fly unmanned aircraft came from the departments of Defense and Homeland Security, which wanted to test military drones or use them to monitor U.S. borders.

Later, interest began to build around potential uses for smaller drones, especially by police departments, but also for those wanting to spray crops, monitor pipelines and inspect offshore oil platforms. These drones can weigh anywhere from a few pounds to several hundred.

More recently, commercial demand has soared – from wedding videographers and real estate agents to Amazon and Google, eyeing potential package deliveries.

The FAA bans commercial drone operations with a few, limited exceptions. That ban, however, is undermined almost daily by frustrated small drone operators.

Bolton, also addressing the institute, said the NextGen office is working closely with a drone research team at the FAA’s technical center in Atlantic City, New Jersey.

FAA officials are under pressure from Congress and industry to loosen restrictions on smaller drones. The agency is expected to propose safety rules in November for businesses that want to operate them.

Smaller drones are less an issue for NextGen because the FAA is expected to limit their altitudes to less than 400 feet. Air traffic controllers generally don’t separate aircraft at such low altitudes, except near airports.

But there is also concern about potential traffic and collisions with low-flying smaller drones. NASA researchers are working with the FAA and industry to develop an air traffic control system for aircraft flying at 500 feet or lower. There is no such system today except around airports.

Medium to large drones that are eventually expected fly in “Class A” airspace – over 18,000 feet, where they must be able to avoid collisions with other aircraft – are more of a problem for NextGen.

They will be controlled by a ground pilot, who will be able to see where the drone is on a computer screen and can communicate with controllers. But there won’t be a pilot on board who can look out and adjust course to avoid a collision.

There are other differences as well.

Pilots who fly in Class A airspace file flight plans identifying their routes. But some larger drones are expected to stay aloft at high altitudes for days or weeks at a time, and their flight plans will be much more complex.

ERAM, a NextGen computer system that controllers use to guide high-altitude air traffic, won’t be able to handle such voluminous flight plans and will have to be adjusted, aviation experts said. ERAM is already over budget and years overdue.

A greater concern is that drones fly much slower than other planes in Class A airspace, Stephenson said.

Planes at high altitudes are supposed follow designated highways in the sky to avoid collisions. A typical airliner on that highway might fly at over 500 mph, while a drone at the same altitude might fly at only 175 mph, he said. The more drones, the worse the traffic jam.

“Some people think you won’t be able to see the sun anymore because of all the (drones) that are going to be up there,” Stephenson said. “Other people say, `No, it’s just going to be a few. It’s no big deal.’ ”

Sources: FAA Managers Association, Associated Press

One comment

  1. The FAA is working on this NEXT Gen… stuff since 2004. Well I am sure even before then.
    I just checked my calendar…. that is more than 10 years ago.

    If this keep going we have a real problem on our hands. I am not sure but I think we are using the wrong guys to implement something which can and should be done in MONTHS not years.

    I am sure you all know the KISS system ” keep it simple stupid ”

    First of all point or add the cell network transmitters so that they cover up to 1100 feet or so into the air. Then make sure every low flying UAV or UAS has a bidirectional black box on it so that it can and receive data from a cloud based data base. this way you know where any UAV or UAS is in space when covered by the cell phone network…… This system would allow you to track, file and force the UAS to fly or land. At the same time to have an interface running with the big planes when or before they hit the 1100 feet or higher that they know that there are other smaller planes in the area….

    This is stuff which can been done thanks to the smart phone technology in months not years…… you could even use SAT phones for higher or low flying aircraft’s….

    This is all basic stuff…….

    You will see this sense and avoid stuff is just basic stuff as GPS is much more important for longer flight as sensor can only really work larger aircraft’s.

    only my two sense.

Leave a Reply

Your email address will not be published. Required fields are marked *