Title :
Design of fault-tolerant digital filters based on redundant residue number arithmetic for over-the-air reconfiguration in software radio communication systems
Author :
Honda, Makoto ; Harada, Hiroshi ; Fujise, Masayuki
Author_Institution :
Sony/Tektronix Corp., Tokyo, Japan
fDate :
6/24/1905 12:00:00 AM
Abstract :
Over-the-air reconfiguration is a key characteristic of software defined radio communication systems. It offers great advantages in terms of cost-effective software deployment to a large number of user terminals. It also enables manufacturers and service providers to introduce additional features in hardware components after their shipment. Even though automatic repeat request (ARQ) or forward error correction (FEC) schemes are used for error control in transmission of configuration data (CD), the received configuration data may not be error free, therefore, the erroneous CD result in implementation of faulty circuits. In order to reduce the effects of the CD error, fault-tolerant processing is provided in circuits to be reconfigured over the air. We designed fault-tolerant digital filters based on redundant residue number arithmetic. A computer simulation model is described and simulation results are presented for the filters operating in the presence of simulated hardware failures.
Keywords :
automatic repeat request; data communication; digital filters; fault tolerance; forward error correction; network synthesis; residue number systems; software architecture; ARQ; FEC; automatic repeat request; computer simulation model; configuration data transmission; cost-effective software deployment; error control; fault-tolerant digital filter design; fault-tolerant processing; forward error correction; manufacturers; over-the-air reconfiguration; redundant residue number arithmetic; service providers; simulated hardware failures; simulation results; software radio communication systems; user terminals; Automatic repeat request; Computer errors; Computer simulation; Digital arithmetic; Digital filters; Error correction; Fault tolerant systems; Forward error correction; Hardware; Software radio;
Conference_Titel :
Vehicular Technology Conference, 2002. VTC Spring 2002. IEEE 55th
Print_ISBN :
0-7803-7484-3
DOI :
10.1109/VTC.2002.1002710