Requirements for an integrated UAS CNS architecture

The National Aeronautics and Space Administration (NASA) Glenn Research Center (GRC) is investigating revolutionary and advanced universal, reliable, always available, cyber secure and affordable Communication, Navigation, Surveillance (CNS) options for all altitudes of UAS operations. In Spring 2015, NASA issued a Call for Proposals under NASA Research Announcements (NRA) NNH15ZEA001N, Amendment 7 Subtopic 2.4. Boeing was selected to conduct a study with the objective to determine the most promising candidate technologies for Unmanned Air Systems (UAS) air-to-air and air-to-ground data exchange and analyze their suitability in a post-NextGen NAS environment. The overall objectives are to develop UAS CNS requirements and then develop architectures that satisfy the requirements for UAS in both controlled and uncontrolled airspace. This contract is funded under NASA's Aeronautics Research Mission Directorates (ARMD) Aviation Operations and Safety Program (AOSP) Safe Autonomous Systems Operations (SASO) project and proposes technologies for the Unmanned Air Systems Traffic Management (UTM) service.

[1]  Raj Jain,et al.  Considerations for an integrated UAS CNS architecture , 2017, 2017 Integrated Communications, Navigation and Surveillance Conference (ICNS).

[2]  Vinton G. Cerf,et al.  Delay-Tolerant Networking Architecture , 2007, RFC.

[3]  Jürgen Falb,et al.  The Internet Protocol , 2005, The Industrial Information Technology Handbook.

[4]  Marcus Johnson,et al.  Unmanned Aircraft System Traffic Management (UTM) Concept of Operations , 2016 .

[5]  Susan Hares,et al.  A Border Gateway Protocol 4 (BGP-4) , 1994, RFC.

[6]  Busyairah Syd Ali,et al.  Automatic Dependent Surveillance Broadcast (ADS-B) , 2017 .

[7]  Stephen E. Deering,et al.  Internet Protocol, Version 6 (IPv6) Specification , 1995, RFC.