TY - GEN
T1 - Wireless infrastructure for remote environmental monitoring
T2 - 2013 International Conference on Selected Topics in Mobile and Wireless Networking, MoWNeT 2013
AU - Yang, Fan
AU - Gondi, Vamsi
AU - Hallstrom, Jason O.
AU - Wang, Kuang Ching
AU - Eidson, Gene
AU - Post, Christopher J.
PY - 2013
Y1 - 2013
N2 - The world is witnessing tremendous innovation in wireless sensing technology, which creates opportunities to benefit environmental monitoring in significant ways. However, there are several challenges that are not thoroughly discussed by current studies in designing the wireless network infrastructure for these applications. In general, the monitoring units should provide reliable data communication across diverse environments. The wireless system should also meet requirements that most current platforms fail to satisfy, such as scalable coverage, reliability, robustness, and low operating cost. Finally, the network architecture should be kept simple to aid in the management of infrastructure deployments across disparate environments. With the aim of addressing these challenges, a two-tier network architecture for remote environmental monitoring is described in this study: (i) A sensor gateway is designed to transmit observation data from local sensors at the first tier. (ii) The second tier of the infrastructure reliably replays this data to a remote server for analysis via a wireless mesh network. A wide range of environments are supported, from open fields and dense forests, to Wi-Fi areas and cellular-only zones. In this study, a wireless backhaul network comprising wireless sensor gateways was deployed in Aiken, South Carolina. The network performance was systematically evaluated through experimental trials. Results demonstrate the infrastructures ability to support effective data collection and reliable data transmission.
AB - The world is witnessing tremendous innovation in wireless sensing technology, which creates opportunities to benefit environmental monitoring in significant ways. However, there are several challenges that are not thoroughly discussed by current studies in designing the wireless network infrastructure for these applications. In general, the monitoring units should provide reliable data communication across diverse environments. The wireless system should also meet requirements that most current platforms fail to satisfy, such as scalable coverage, reliability, robustness, and low operating cost. Finally, the network architecture should be kept simple to aid in the management of infrastructure deployments across disparate environments. With the aim of addressing these challenges, a two-tier network architecture for remote environmental monitoring is described in this study: (i) A sensor gateway is designed to transmit observation data from local sensors at the first tier. (ii) The second tier of the infrastructure reliably replays this data to a remote server for analysis via a wireless mesh network. A wide range of environments are supported, from open fields and dense forests, to Wi-Fi areas and cellular-only zones. In this study, a wireless backhaul network comprising wireless sensor gateways was deployed in Aiken, South Carolina. The network performance was systematically evaluated through experimental trials. Results demonstrate the infrastructures ability to support effective data collection and reliable data transmission.
UR - https://www.scopus.com/pages/publications/84886653441
U2 - 10.1109/MoWNet.2013.6613799
DO - 10.1109/MoWNet.2013.6613799
M3 - Conference contribution
SN - 9781479905065
T3 - 2013 International Conference on Selected Topics in Mobile and Wireless Networking, MoWNeT 2013
SP - 68
EP - 73
BT - 2013 International Conference on Selected Topics in Mobile and Wireless Networking, MoWNeT 2013
PB - IEEE Computer Society
Y2 - 19 August 2013 through 21 August 2013
ER -