DocumentCode :
1845085
Title :
Advanced photonic subsystems to implement reconfigurable, fault-tolerant avionics
Author :
Valentino, George J. ; Johnson, Dale L.
Author_Institution :
Systran Fed. Corp., Dayton, OH, USA
Volume :
1
fYear :
2001
fDate :
14-18 Oct 2001
Abstract :
Existing and emerging combat, support, and commercial aircraft and rotorcraft will continue to incorporate new sensors, data processors, and related systems that will make the complex, mostly federated avionics systems of the 70´s through 90´s took like antiques. As the data processing, multisensor fusion, and automatic operations continue to burden the conventional avionics infrastructures, new and innovative architectures and subsystems will be needed to meet the high-bandwidth, low-latency, and other criteria of future avionics systems. Implicit in such future systems will be the requirement for fault-tolerance and reconfiguration in the presence of faults. The tremendous growth in the telecommunications infrastructure has led to a series of technologies and devices that provide the basis for unique subsystems that can implement such advanced, reconfigurable, fault-tolerant avionics systems. At Systran Federal Corp., we are developing two photonic subsystems that can realize the vision of such avionics systems. These subsystems are called the JANUS fault-tolerant communications device and the AEGLE photonic switching system. JANUS is a specialized fibre-channel interface that offers 2 Gbit/s of data movement across multiple interfaces. AEGLE is a photonic switching system that incorporates emerging switching devices at its core. This paper provides our vision for the ROSAA (Reconfigurable Open-Systems Avionics Architecture) and details of the JANUS and AEGLE prototype subsystems we are developing to achieve this vision
Keywords :
aircraft computers; fault tolerant computing; helicopters; military avionics; open systems; photonic switching systems; system buses; AEGLE photonic switching system; COTS; JANUS fault-tolerant communications device; advanced photonic subsystems; combat aircraft; commercial aircraft; multisensor fusion; photonic switching system; prototype subsystems; reconfigurable fault-tolerant avionics; reconfigurable open-systems avionics architecture; rotorcraft; specialized fibre-channel interface; Aerospace electronics; Aircraft; Communication switching; Data processing; Fault tolerant systems; Optical fiber communication; Optical fiber devices; Optoelectronic and photonic sensors; Sensor systems; Switching systems;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Digital Avionics Systems, 2001. DASC. 20th Conference
Conference_Location :
Daytona Beach, FL
Print_ISBN :
0-7803-7034-1
Type :
conf
DOI :
10.1109/DASC.2001.963310
Filename :
963310
Link To Document :
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