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AuthorArar A.
AuthorMohamed A.
AuthorEl-Sherif A.A.
AuthorLeung V.C.M.
Available date2022-04-21T08:58:27Z
Publication Date2018
Publication NameIEEE Systems Journal
ResourceScopus
Identifierhttp://dx.doi.org/10.1109/JSYST.2016.2618386
URIhttp://hdl.handle.net/10576/30111
AbstractWireless video sensor networks (WVSNs) are opening the door for many applications, such as industrial surveillance, environmental tracking, border security, and infrastructure health monitoring. In WVSN, energy conservation is very essential because: 1) sensors are usually battery-operated and 2) each sensor node needs to compress the video prior to transmission, which consumes more power than conventional wireless sensor networks. In this paper, we study the problem of minimizing the total power consumption in a cluster-based WVSN, leveraging cross-layer design to optimize the encoding power, the transmission power, and the source rate at each sensor node. To realize this problem, we devise a resource optimization framework, which takes into account the video signal distortion due to compression, in addition to packet loss in the wireless channel while trying to allocate network resources among multiple video sensors. Leveraging duality theory, we design a proximal minimization algorithm that is capable of achieving the optimal allocation of network resources, source rates, and encoding and communication powers, while providing application-level quality of service represented by video distortion. The algorithm is extended for sensor nodes with hybrid energy sources, leveraging energy harvesting to minimize the aggregate power, while addressing the tradeoff between renewable versus grid energy sources. 2007-2012 IEEE.
Languageen
PublisherInstitute of Electrical and Electronics Engineers Inc.
SubjectEncoding (symbols)
Energy harvesting
Quality of service
Resource allocation
Security systems
Signal encoding
Environmental tracking
Industrial surveillance
Infrastructure health monitoring
Minimization algorithms
Multiple video sensors
Optimal resource allocation
Total power consumption
Wireless video sensor network (WVSNs)
Sensor nodes
TitleOptimal resource allocation for green and clustered video sensor networks
TypeArticle
Pagination2117-2128
Issue Number3
Volume Number12


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