Please note: This is a beta version of the new dblp website.
You can find the classic dblp view of this page here.
You can find the classic dblp view of this page here.
Stephen J. Bellis
2000 – 2009
- 2005
[j2]Stephen J. Bellis, Kieran Delaney, Brendan O'Flynn, John Barton, Kafil Mahmood Razeeb, S. Cian O'Mathuna: Development of field programmable modular wireless sensor network nodes for ambient systems. Computer Communications 28(13): 1531-1544 (2005)
[c5]Brendan O'Flynn, Stephen J. Bellis, Kieran Delaney, John Barton, S. Cian O'Mathuna, André M. Barroso, Jonathan P. Benson, Utz Roedig, Cormac J. Sreenan: The development of a novel minaturized modular platform for wireless sensor networks. IPSN 2005: 370-375- 2004
[c4]Stephen J. Bellis, Kafil Mahmood Razeeb, C. R. Saha, Kieran Delaney, S. Cian O'Mathuna, Anthony Pounds-Cornish, Gustavo de Souza, Martin Colley, Hani Hagras, Graham Clarke, Victor Callaghan, Christos Argyropoulos, C. Karistianos, George Nikiforidis: FPGA implementation of spiking neural networks - an initial step towards building tangible collaborative autonomous agents. FPT 2004: 449-452
[c3]André M. Barroso, Jonathan P. Benson, Tina Murphy, Utz Roedig, Cormac J. Sreenan, John Barton, Stephen J. Bellis, Brendan O'Flynn, Kieran Delaney: The DSYS25 sensor platform. SenSys 2004: 314- 2003
[c2]Achilles Kameas, Stephen J. Bellis, Irene Mavrommati, Kieran Delaney, Martin Colley, Anthony Pounds-Cornish: An Architecture that Treats Everyday Objects as Communicating Tangible Components. PerCom 2003: 115-- 2000
[c1]Stephen J. Bellis, William P. Marnane: A CORDIC Arctangent FPGA Implementation for a High-Speed 3D-Camera System. FPL 2000: 485-494
1990 – 1999
- 1997
[j1]Stephen J. Bellis, Peter J. Fish, William P. Marnane: Optimal Systolic Arrays for Real-time Implementation of the Modified Covariance Spectral Estimator. Parallel Algorithms Appl. 11(1-2): 71-96 (1997)
Coauthor Index
data released under the ODC-BY 1.0 license. See also our legal information page
last updated on 2012-12-02 21:31 CET by the dblp team



