TY - GEN
T1 - A flexible framework for wireless-based intelligent sensor with reconfigurability, dynamic adding, and web interface
AU - Yu, Hung Chieh
AU - Tseng, Shu Ming
PY - 2006
Y1 - 2006
N2 - In this paper, we propose the use of standard, verifiable, common approach Platform called The Flexible Wireless Sensor platform (FWSP) architecture which had following features remote internet enabler, Reconfiguration by parameter which improve precision, Dynamic addition of sensor nodes, and fault tolerance which increase the reliability, stability, The goals of the FWSP architecture are to establish: common controller-hardware(System on module), a common control program, common device drivers, a common managed objects base, and a common appearance to higher-level sensor network management. The proposed platform architecture offers flexibility, easy customization, and seamless system integration. An Experiment has been established based on wireless communication channel, using wireless Lan (IEEE802.11) [1] as primary communication channel on our prototype Sensor node, I2C /Smbus [2] device such as temperature sensors, and desire sensor information can be viewed, and Sensor parameter can be adjusted to meet demanding. Measurements about the development time, sensor reconfiguration and confirm the proposed framework feasibility and effectiveness.
AB - In this paper, we propose the use of standard, verifiable, common approach Platform called The Flexible Wireless Sensor platform (FWSP) architecture which had following features remote internet enabler, Reconfiguration by parameter which improve precision, Dynamic addition of sensor nodes, and fault tolerance which increase the reliability, stability, The goals of the FWSP architecture are to establish: common controller-hardware(System on module), a common control program, common device drivers, a common managed objects base, and a common appearance to higher-level sensor network management. The proposed platform architecture offers flexibility, easy customization, and seamless system integration. An Experiment has been established based on wireless communication channel, using wireless Lan (IEEE802.11) [1] as primary communication channel on our prototype Sensor node, I2C /Smbus [2] device such as temperature sensors, and desire sensor information can be viewed, and Sensor parameter can be adjusted to meet demanding. Measurements about the development time, sensor reconfiguration and confirm the proposed framework feasibility and effectiveness.
KW - Device
KW - IC /smbus
KW - Microcontrollers
KW - SNMP
KW - Sensor network
KW - Sensor node
KW - Wireless LAN
KW - Wireless sensors
UR - https://www.scopus.com/pages/publications/33845568093
U2 - 10.1109/SNPD-SAWN.2006.16
DO - 10.1109/SNPD-SAWN.2006.16
M3 - ???researchoutput.researchoutputtypes.contributiontobookanthology.conference???
AN - SCOPUS:33845568093
SN - 076952611X
SN - 9780769526119
T3 - Proc. - Seventh ACIS Int. Conf. on Software Eng., Artific. Intelligence, Netw., and Parallel/Distributed Comput., SNPD 2006, including Second ACIS Int. Worshop on SAWN 2006
SP - 231
EP - 236
BT - Proceedings - Seventh ACIS International Conference on Software Eng., Artific. Intelligence, Networking, and Parallel/Distributed Computing, SNPD 2006, including Second ACIS Int. Workshop on SAWN 2006
T2 - 7th ACIS International Conference on Software Engineering, Artificial Intelligence, Networking, and Parallel/Distributed Computing, SNPD 2006, including Second ACIS International Workshop on Self-Assembling Wireless Networks, SAWN 2006
Y2 - 19 June 2006 through 20 June 2006
ER -