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Energy-efficient Topology Control for Wireless Sensor Networks Using Online Battery Monitoring : Volume 5, Issue 10 (13/06/2007)

By Behrens, C.

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Book Id: WPLBN0003972741
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File Size: Pages 4
Reproduction Date: 2015

Title: Energy-efficient Topology Control for Wireless Sensor Networks Using Online Battery Monitoring : Volume 5, Issue 10 (13/06/2007)  
Author: Behrens, C.
Volume: Vol. 5, Issue 10
Language: English
Subject: Science, Advances, Radio
Collections: Periodicals: Journal and Magazine Collection (Contemporary), Copernicus GmbH
Historic
Publication Date:
2007
Publisher: Copernicus Gmbh, Göttingen, Germany
Member Page: Copernicus Publications

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Laur, R., Bischoff, O., Lueders, M., & Behrens, C. (2007). Energy-efficient Topology Control for Wireless Sensor Networks Using Online Battery Monitoring : Volume 5, Issue 10 (13/06/2007). Retrieved from http://self.gutenberg.org/


Description
Description: Institute for Electromagnetic Theory and Microelectronics (ITEM), University of Bremen, Bremen, Germany. This paper presents a first approach towards cooperative energy management in wireless sensor networks using online battery monitoring. Using a standard platform for wireless sensor networks, a simple concept for measuring the battery voltage on the mote with little additional hardware is shown. This is used for modelling of the battery discharge behaviour of Li-Ion batteries and deriving the remaining lifetime under given environmental conditions. As an application example this model can be incorporated into a topology control scheme for optimized network lifetime under variable environmental conditions.

Summary
Energy-efficient topology control for wireless sensor networks using online battery monitoring

Excerpt
Chen, B., Jamieson, K., Balakrishnan, H., and Morris, R.: SPAN: An Energy-Efficient Coordination Algorithm for Topology Maintenance in Ad Hoc Wireless Networks, Mobile Computing and Networking Conference, 85–96, 2001.; Gehrke, J. D., Behrens, C., Jedermann, R., and Morales Kluge, E.: The intelligent Container – Toward Autonomous Logistic Processes, in: KI 2006 Demo Presentations, University of Bremen, 15–18, 2006.; Milenkovic, A., Milenkovic, M., Jovanov, E., Hite, D., and Raskovic, D.: An environment for runtime power monitoring of wireless sensor network platforms, Proc. of SSST'05, 406–410, 2005.; Panasonic CGA103450A Li-Ion cell datasheet: http://www.panasonic.com/industrial/battery/oem/images/pdf/Panasonic_LiIon_CGA103450A.pdf, 2006.; Rao, R. and Rakhmatov, D. N.: Battery Modeling for Energy-Aware System Design, IEEE Computer, 36(12), 77–87, 2003.; Shnayder, V., Hempstead, M., Chen, B., Allen, G. W., and Welsh, M.: Simulating the power consumption of large-scale sensor network applications, Proc. 2nd international Conference on Embedded Networked Sensor Systems, ACM Press, New York, NY, 188–200, 2004.; Texas Instruments MSP430F1611 Microcontroller Datasheet: http://focus.ti.com/lit/ds/symlink/msp430f1611.pdf, 2006.; TMoteSky Datasheet, Moteiv Cooperation: http://www.moteiv.com/products/docs/tmote-sky-datasheet.pdf, 2006.; Xu, Y., Bien, S., Mori, Y., Heidemann, J., and Estrin, D.: Topology Control Protocols to Conserve Energy in Wireless Ad Hoc Networks, CENS Technical Report 0006, 2003.; Younis, O. and Fahmy, S.: An experimental study of routing and data aggregation in sensor networks, Conference on Mobile Ad hoc and Sensor System, 8–15, 2005.

 
 



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