Error Control Coding in Low-Power Wireless Sensor Networks: When Is ECC Energy-Efficient?

被引:0
作者
Sheryl L. Howard
Christian Schlegel
Kris Iniewski
Kris Iniewski
机构
[1] University of Alberta,Department of Electrical & Computer Engineering
来源
EURASIP Journal on Wireless Communications and Networking | / 2006卷
关键词
Power Consumption; Energy Efficiency; Wireless Sensor Network; Free Space; Energy Saving;
D O I
暂无
中图分类号
学科分类号
摘要
This paper examines error control coding (ECC) use in wireless sensor networks (WSNs) to determine the energy efficiency of specific ECC implementations in WSNs. ECC provides coding gain, resulting in transmitter energy savings, at the cost of added decoder power consumption. This paper derives an expression for the critical distance[inline-graphic not available: see fulltext], the distance at which the decoder's energy consumption per bit equals the transmit energy savings per bit due to coding gain, compared to an uncoded system. Results for several decoder implementations, both analog and digital, are presented for[inline-graphic not available: see fulltext] in different environments over a wide frequency range. In free space,[inline-graphic not available: see fulltext] is very large at lower frequencies, suitable only for widely spaced outdoor sensors. In crowded environments and office buildings,[inline-graphic not available: see fulltext] drops significantly, to 3 m or greater at 10 GHz. Interference is not considered; it would lower[inline-graphic not available: see fulltext]. Analog decoders are shown to be the most energy-efficient decoders in this study.
引用
收藏
相关论文
共 87 条
  • [1] Lin T-H(2004)Integrated low-power communication system design for wireless sensor networks IEEE Communications Magazine 42 142-150
  • [2] Kaiser WJ(2005)A 400 Proceedings of IEEE International Solid-State Circuits Conference (ISSCC '05) 1 396-397
  • [3] Pottie GJ(2003)-RX, 1.6mW-TX super-regenerative transceiver for wireless sensor networks IEEE Transactions on Power Electronics 18 696-703
  • [4] Otis B(2002)Optimized piezoelectric energy harvesting circuit using step-down converter in discontinuous conduction mode Proceedings of 21st International Conference of IEEE Computer and Communications Societies (INFOCOM '02) 3 1567-1576
  • [5] Chee YH(1999)An energy-efficient MAC protocol for wireless sensor networks Proceedings of IEEE 50th Vehicular Technology Conference (VTC '99) 2 1222-1226
  • [6] Rabaey J(1997)Performance of a novel self-organization protocol for wireless ad-hoc sensor networks IEEE Personal Communications 4 8-15
  • [7] Ottman GK(2001)Piconet: embedded mobile networking IEEE Journal of Solid-State Circuits 36 452-466
  • [8] Hofmann HF(2001)An ultralow-power UHF transceiver integrated in a standard digital CMOS process: architecture and receiver IEEE Journal of Solid-State Circuits 36 467-472
  • [9] Lesieutre GA(2004)An ultralow-power UHF transceiver integrated in a standard digital CMOS process: transmitter Proceedings of IEEE Wireless Communications and Networking Conference (WCNC '04) 4 2492-2497
  • [10] Ye W(2004)Data aware, low cost error correction for wireless sensor networks Journal of VLSI Signal Processing Systems for Signal, Image, and Video Technology 37 77-94