Military & Aerospace Electronics Online Article

| Add RSS Feed

Network centric warfare airborne military communications links approved for deployment

By John Keller

HANSCOM AFB, Mass., 26 June 2009. U.S. Air Force officials are planning to switch an airborne military communications networking link from prototype stage to deployment, which will provide a tactical data link gateway that links fighting forces in the field that are using dissimilar tactical network technology in network centric warfare operations.

The military networking gateway for network centric operations is the Northrop Grumman Battlefield Airborne Communications Node (BACN). The Air Force awarded Northrop Grumman a $276.3 million contract this week to provide for rapid fielding and support of the BACN system.

The contract, from the Air Force Electronic Systems Center at Hanscom Air Force Base, Mass., is to the Northrop Grumman Defense Mission Systems segment in San Diego, which developed BACN as part of the U.S. Department of Defense (DOD) Interim Gateway Program for network centric systems.

Northrop Grumman will install the BACN system in three Bombardier BD-700 Global Express regional jet aircraft for immediate fielding, and will install the BACN system on two RQ-4 Global Hawk Block 20 unmanned aerial vehicles (UAVs) for sustained deployment through 2015.

BACN performs several roles, chief among them a tactical network gateway that links different military networks to enable fighting forces in the field to communicate digitally, as well as a military satellite communications relay that enables widely separated forces to communicate via satellite.

The networking gateway enables dissimilar military networks to communicate -- even though these networks may operate on different radio frequencies or with different message sets -- such as the LINK 16 Joint Tactical Information Distribution System, the Situation Airborne Data Link (SADL), and the Integrated Broadcast System (IBS).

Part of the BACN system is a forward tactical server that enables separate military networks to share data over secure and open Internet connections through the Internet Protocol. BACN also enables military, civil, and commercial communications to communicate across dissimilar networks -- including UHF and VHF radios, cell phones, or 802.11 wireless computer networks.

Essentially, the BACN system has the capability to enable a soldier on the ground to use a cell phone to text message jet fighter and bomber pilots operating in his area.

Deploying the BACN system fills an urgent and compelling requirement for enhanced communications capability for the global war on terror -- particularly in Iraq and Afghanistan -- which the Obama Administration refers to as "overseas contingency operations."

The BACN system fills a military communications and networking need that was created in the wake of retirements earlier this decade of airborne systems such as the EC-235 communications aircraft and the Airborne Battlefield Command and Control Center, otherwise known as the ABCCC.

For the BACN system, Northrop Grumman engineers are using an aerospace-networking payload they developed that has Internet protocol-based radios, gateway manager, software-defined radios, and Advanced Information Architecture (AIA).

Northrop Grumman has tested this payload aboard a NASA WB-57 high-altitude aircraft. Just last year, Northrop Grumman demonstrated this technology when they downloaded and distributed sensor information from an F-22 Raptor jet fighter to F-15 and F-16 aircraft, when the F-22 was using a low-probability-of-intercept Intra-Flight Data Link (IFDL) -- an isolated channel that can be received only by other F-22s -- while the other aircraft were using the Link 16 network.




| Add RSS Feed


 
Return to Previous Page

 
 





 

Military & Aerospace Electronics Webcasts






Thermal Management: Keeping It Cool in Military Systems
November 16, 2009










The VPX STANDARD and Its Use in Military Applications
Original broadcast on
July 29, 2009












Implementing High Performance Embedded Applications with RapidIO Switching and High Performance Multicore DSPs
Original broadcast on
April 29, 2009





More
 
Sponsored White Papers Library
Recently Added White Papers

File System Considerations in a Multi-Core RTOS Environment (10/23/2009, Curtiss-Wright Controls Embedded Computing)

Pilatus PC-21 - the trainer aircraft for the 21st century (10/23/2009, Curtiss-Wright Controls Embedded Computing)

Integrated VXS SIGINT Digital Receiver/Processor (10/23/2009, Curtiss-Wright Controls Embedded Computing)

Rugged VME and CompactPCI hardware platform controls multiple unmanned aircraft (09/29/2009, Kontron)

Kontron supplies multi-processor VME solution to power the world's most accurate satellite navigation system (09/29/2009, Kontron)

More