| N. Saxena, S. Fernandez-Gomez, W.-J. Huang, S. Mitra, S.- Y. Yu, and E. J. McCluskey. Dependable Computing and Online Testing in Adaptive and Configurable Systems. IEEE Design and Test of Computers, 17(1):29--41, Jan. 2000. |
....performance is traded for fault tolerance in the PipeRench reconfigurable architecture by including built in self test (BIST) circuitry in the architecture control circuitry. Unlike our approach, these previous efforts require additional system hardware to support fault tolerance. In Saxena et al. [21], a full fault recovery system is described including a multi threaded processor, FPGA, memory and an I O interface. Although the architecture appears to have the capability to automatically detect and recover from faults, a physical implementation of the system was not developed. Network based ....
N. Saxena, S. Fernandez-Gomez, W.-J. Huang, S. Mitra, S.- Y. Yu, and E. J. McCluskey. Dependable Computing and Online Testing in Adaptive and Configurable Systems. IEEE Design and Test of Computers, 17(1):29--41, Jan. 2000.
....133MHz SDRAM Chip1 Chip2 High Speed System Backplane Figure 1. A Xilinx Virtex chip as a system component an ACS implementation [Xilinx 99] Applications that are well suited for ACS are: digital signal processing, image processing, control, bit manipulation, compression, and encryption [Saxena 00] Most of the research and development in the ACS area has been dictated by the performance requirements of target applications. Performance is an important requirement; however, the use of ACS applications in areas like nuclear reactors, fly by wire systems, remote (space station) locations, and ....
Saxena, N. R., S. Fernandez-Gomez, W.-J. Huang, S. Mitra, S.-Y. Yu, and E. J. McCluskey, "Dependable Computing and Online Testing in Adaptive and Configurable Systems," IEEE Design and Test, pp. 29-41, 2000.
Online articles have much greater impact More about CiteSeer.IST Add search form to your site Submit documents Feedback
CiteSeer.IST - Copyright Penn State and NEC