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>Modulation/demodulation techniques with FPGAapos;s architecture to improve OFDM wireless underwater communication transceiver
Nasri, N.; Ben Hnia, H.; Kachouri, A.; Abdellaoui, M.; Samet, M.
Design and Test of Integrated Systems in Nanoscale Technology, 2006. DTIS 2006. International Conference on
Volume , Issue , Sept. 5-7, 2006 Page(s): 400 - 403
Digital Object Identifier
>FPGA implementation of a CDMA source coding and modulation subsystem for a multiband fluorometer with pattern recognition capabilities
Boukadourn, M.; Tabari, K.; Bensaoula, A.; Starikov, D.; Aboulhamid, E.M.
Circuits and Systems, 2005. ISCAS 2005. IEEE International Symposium on
Volume , Issue , 23-26 May 2005 Page(s): 4767 - 4770 Vol. 5
Digital Object Identifier 10.1109/ISCAS.2005.1465698
Summary: We describe the design of a source coding and modulation circuit to be used in the front end of a multiband fluorometer device. The circuit uses a CDMA approach to minimize ambient and exogenous noise contamination and is implemented in a Xilinx Spartan 3 FPGA. The eight channel CDMA modulator and demodulator subsections use 1172 slices, or 61% of a XC3S200 FPGA, leaving ample room to embed a Microblaze IP core for spectral signature analysis and pattern recognition, and user interaction
>Modulation/demodulation techniques with FPGAapos;s architecture to improve OFDM wireless underwater communication transceiver
Nasri, N.; Ben Hnia, H.; Kachouri, A.; Abdellaoui, M.; Samet, M.
Design and Test of Integrated Systems in Nanoscale Technology, 2006. DTIS 2006. International Conference on
Volume , Issue , Sept. 5-7, 2006 Page(s): 400 - 403
Digital Object Identifier
>FPGA implementation of a CDMA source coding and modulation subsystem for a multiband fluorometer with pattern recognition capabilities
Boukadourn, M.; Tabari, K.; Bensaoula, A.; Starikov, D.; Aboulhamid, E.M.
Circuits and Systems, 2005. ISCAS 2005. IEEE International Symposium on
Volume , Issue , 23-26 May 2005 Page(s): 4767 - 4770 Vol. 5
Digital Object Identifier 10.1109/ISCAS.2005.1465698
Summary: We describe the design of a source coding and modulation circuit to be used in the front end of a multiband fluorometer device. The circuit uses a CDMA approach to minimize ambient and exogenous noise contamination and is implemented in a Xilinx Spartan 3 FPGA. The eight channel CDMA modulator and demodulator subsections use 1172 slices, or 61% of a XC3S200 FPGA, leaving ample room to embed a Microblaze IP core for spectral signature analysis and pattern recognition, and user interaction