DocumentCode
743654
Title
Technology demonstrator of a novel software defined radio-based aeronautical communications system
Author
Yongqiang Cheng ; Kai Xu ; Yim Fun Hu ; Pillai, Prashant ; Baddoo, Jim ; Smith, Aleister ; Ali, Muhammad ; Pillai, Anju
Author_Institution
Sch. of Eng. & Inf., Univ. of Bradford, Bradford, UK
Volume
8
Issue
6
fYear
2014
Firstpage
370
Lastpage
379
Abstract
This study presents the architectural design, software implementation, the validation and flight trial results of an aeronautical communications system developed within the Seamless Aeronautical Networking through integration of Data links Radios and Antennas (SANDRA) project funded by the European 7th Framework Aeronautics and Transport Programme. Based on software defined radio (SDR) techniques, an integrated modular radio (IMR) platform was developed to accommodate several radio technologies. This can drastically reduce the size, weight and cost in avionics with respect to current radio systems implemented as standalone equipment. In addition, the modular approach ensures the possibility to dynamically reconfigure each radio element to operate on a specific type of radio link. A radio resource management (RRM) framework is developed in the IMR consisting of a communication manager for the resource allocation and management of the different radio links and a radio adaptation manager to ensure protocol convergence through IP. The IMR has been validated although flight trials held at Oberpfaffenhofen, Germany in June 2013. The results presented in the paper validate the flexibility and scalability of the IMR platform and demonstrate seamless service coverage across different airspace domains through interworking between the IMR and other components of the SANDRA network.
Keywords
aircraft communication; antennas; avionics; mobility management (mobile radio); protocols; radio links; resource allocation; software radio; telecommunication network reliability; European 7th Framework Aeronautics and Transport Programme; Germany; IMR platform; IP; Oberpfaffenhofen; RRM framework; SANDRA project; SDR technique; antenna; avionics; communication management; data radio link; integrated modular radio platform; protocol convergence; radio adaptation management; radio resource management framework; resource allocation; scalability; seamless aeronautical networking; software defined radio-based aeronautical communications system;
fLanguage
English
Journal_Title
Science, Measurement & Technology, IET
Publisher
iet
ISSN
1751-8822
Type
jour
DOI
10.1049/iet-smt.2014.0003
Filename
6985837
Link To Document