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Energy-saving PPM schemes for WSNs

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【Author】 TANG QiuLing1, YANG LiuQing2, QIN TuanFa1 & ZHANG ShuYi3 1 School of Computer, Electronics and Information, Guangxi University, Nanning 530004, China; 2 Department of Electrical and Computer Engineering, University of Florida, P. O. Box 116130, Gainesville, FL 32611, USA; 3 Lab of Modern Acoustics, Nanjing University, Nanjing 210093, China

【摘要】 Energy conservation is a critical problem in recently-emerging wireless sensor networks (WSNs). Pulse position modulation (PPM), as an exploring-worthy modulation format for energy efficiency, is tailored for WSNs into two schemes, mono-mode PPM and multi-mode PPM, in this paper. Resorting to an idealized system model and a practical system model, which combine the power consumptions in transmission and reception modules of nodes with the idealized and realistic battery characteristics, the battery energy efficiencies of mono-mode PPM and multi-mode PPM are evaluated and compared. To minimize the battery energy consumption (BEC), these schemes are further optimized in terms of constellation size M for a link in path-loss channels. Our analytical and numerical results show that considerable energy can be saved by multi-mode PPM; and the optimization performances of these schemes are noticeable at various communication distances though their optimization properties are different.

【Abstract】 Energy conservation is a critical problem in recently-emerging wireless sensor networks (WSNs). Pulse position modulation (PPM), as an exploring-worthy modulation format for energy efficiency, is tailored for WSNs into two schemes, mono-mode PPM and multi-mode PPM, in this paper. Resorting to an idealized system model and a practical system model, which combine the power consumptions in transmission and reception modules of nodes with the idealized and realistic battery characteristics, the battery energy efficiencies of mono-mode PPM and multi-mode PPM are evaluated and compared. To minimize the battery energy consumption (BEC), these schemes are further optimized in terms of constellation size M for a link in path-loss channels. Our analytical and numerical results show that considerable energy can be saved by multi-mode PPM; and the optimization performances of these schemes are noticeable at various communication distances though their optimization properties are different.

【基金】 the National Natural Science Foundation of China (Grant Nos. 60642007 and 10374051);the Scientific Fundation of Guangxi Education Department of China (Grant No. [2002]316)
  • 【文献出处】 Science in China(Series F:Information Sciences) ,中国科学(F辑:信息科学)(英文版) , 编辑部邮箱 ,2008年05期
  • 【分类号】TP212.9;TN929.5
  • 【被引频次】9
  • 【下载频次】58
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