Title
Optimizing Duty-Cycle for Delay and Energy Bound WSN Applications
Abstract
Despite their limited resources, especially energy, wireless sensor networks (WSNs) are being accepted in many application areas. This makes them a challenging yet an appealing research area. Evidently, a lot of research work revolves around energy efficiency in order to prolong WSNs lifetime. A prominent amount of work suggests keeping radios of sensor nodes in low power sleep mode for most of the time. However, this duty-cycling results in increased network latency. Selection of an optimal duty-cycle is always challenging especially for applications where latency, along with energy consumption, plays an important role. This paper evaluates AREA-MAC for delay, energy, and packet delivery ratio factors for several duty-cycle values. AREA-MAC is a medium access control (MAC) protocol designed for realtime and energy-efficient WSN applications. Linear optimization is used to find the optimal value of duty-cycle in order to minimize delay and energy consumption and by keeping packet delivery ratio above a certain threshold.
Year
DOI
Venue
2010
10.1109/WAINA.2010.139
Advanced Information Networking and Applications Workshops
Keywords
Field
DocType
optimal value,increased network latency,optimal duty-cycle,packet delivery ratio factor,energy consumption,packet delivery ratio,wsns lifetime,energy bound wsn applications,duty-cycle value,optimizing duty-cycle,appealing research area,energy efficiency,wireless sensor network,real time systems,computer science,energy efficient,broadcasting,duty cycle,wireless sensor networks,protocols,data models,application software,linear optimization,latency
Latency (engineering),Efficient energy use,Computer science,Duty cycle,Network packet,Computer network,Access control,Sleep mode,Energy consumption,Wireless sensor network,Distributed computing
Conference
ISBN
Citations 
PageRank 
978-1-4244-6701-3
4
0.48
References 
Authors
7
4
Name
Order
Citations
PageRank
Pardeep Kumar124324.38
Mesut Günes213018.13
Qasim Mushtaq3131.06
jochen schiller436642.37