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{"references": ["Khaldoun Al AGHA, Marc-Henri BERTIN, Tuan DANG,\nAlexandre GUITTON, Pascale MINET, Thierry VAL, Jean-\nBaptiste VIOLLET, \"Which Wireless Technology for Industrial\nWireless Sensor Networks? The Development of OCARI\nTechnology\", IEEE Transactions on Industrial Electronics,\nvolume 56, issue 10, October 2009, pp.4266-4278.", "G. Chalhoub, A. Guitton, M. Misson, MAC specifications for a\nWPAN allowing both energy saving and guaranted delay - Part\nA: MaCARI: a synchronized tree-based MAC protocol, IFIP\n2008 Conference on Wireless Sensor and Actor Networks.", "E. Livolant, A Van den Bossche, T.Val, MAC specifications for\na WPAN allowing both energy saving and guaranted delay -\nPart B: Optimisation of the intra cellular exchanges for\nMaCARI, IFIP 2008 Conference on Wireless Sensor and Actor\nNetworks.", "S. Mahfoudh, P. Minet, An energy efficient routing based on\nOLSR in wireless ad hoc and sensor networks, PAEWN 2008,\nIEEE International Workshop on Performance Analysis and\nEnhancement of Wireless Networks, Ginowan, Japan, March\n2008.", "P. Minet, S. Mahfoudh, G. Chalhoub, A. Guitton, Node coloring\nin a wireless sensor network with unidirectional links and\ntopology changes, IEEE WCNC 2010, Sidney Australia, April\n2010.", "http://www.actel.com/products/SmartFusion/default.aspx,\nMarch 2011.", "W. Wolf, \"A decade of hardware/software codesign,\" IEEE\nComputer, vol. 36, pp. 38-43, April 2003.", "P. Garcia, K. Compton, M. Schulte, E. Blem, andW. Fu, \"An\noverview of reconfigurable hardware in embedded systems,\"\nEURASIP Journal on Embedded Systems, vol. 2006, pp. 1-19,\n2006."]}
Traditional development of wireless sensor network mote is generally based on SoC1 platform. Such method of development faces three main drawbacks: lack of flexibility in terms of development due to low resource and rigid architecture of SoC; low capability of evolution and portability versus performance if specific micro-controller architecture features are used; and the rapid obsolescence of micro-controller comparing to the long lifetime of power plants or any industrial installations. To overcome these drawbacks, we have explored a new approach of development of wireless sensor network mote using a hybrid FPGA technology. The application of such approach is illustrated through the implementation of an innovative wireless sensor network protocol called OCARI.
Hybrid FPGA, flexibility, durability, Mote, SoC, Embedded system, OCARI protocol, Wireless Sensor Network
Hybrid FPGA, flexibility, durability, Mote, SoC, Embedded system, OCARI protocol, Wireless Sensor Network
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