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A Novel Interdependent Source-Channel Coding Technique for Enhanced Energy Efficiency in Communication over Wireless Sensor Networks

机译:一种新的相互依存源信道编码技术,用于增强无线传感器网络通信中的能效

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摘要

Reliable energy efficient information transmission is the primary design objective of a Wireless Sensor Network (WSN), considering its unique energy and resource constraints. Energy efficiency and bit error rate (BER) performance are the basic criteria to be taken into account while designing an optimal error correction scheme for WSNs. In this paper, a novel energy efficient error control scheme is proposed which minimizes the energy overheads of a typical error control scheme such as additional bits' transmit energy and encoding/decoding energy, while achieving a better BER performance compared to the standard schemes. The redundant bits' transmit energy is saved by incorporating compression and coding energy is minimized by employing simpler operations compared to other schemes. Further,the proposed scheme is validated in the context of mica2 motes. The BER performance and energy consumption of the presented scheme are studied and compared with standard error control schemes,such as, Hamming (7, 4) and RS (31, 29). Simulation results demonstrate the efficacy of the proposed methodology yielding a coding gain (CG) of 4.093 dB with a parameter selection of {30, 7, 2, 5}, in AWGN channel at BER of , as compared to CG of 0.561 dB and 1.485 dB obtained using Hamming (7, 4) and RS (31, 29), respectively. Further, the standard codes above have a redundancy of 75% and 6.9% respectively while the proposed code with the above parameters achieves a compression of 23.81%. Quantification of energy consumption corresponding to each of the above schemes is also provided to prove the energy efficiency of the proposed technique.
机译:考虑其独特的能量和资源限制,可靠的节能信息传输是无线传感器网络(WSN)的主要设计目标。能效和误码率(BER)性能是在为WSN的最佳纠错方案设计最佳纠错方案时要考虑的基本标准。在本文中,提出了一种新的节能误差控制方案,其最小化典型误差控制方案的能量开销,例如附加比特的发射能量和编码/解码能量,同时与标准方案相比实现了更好的BER性能。通过结合压缩和编码能量来节省冗余位的发射能量,通过与其他方案相比采用更简单的操作,可以最小化。此外,所提出的方案在Mica2 Motes的背景下验证。研究了所提出的方案的BER性能和能耗,并与标准误差控制方案进行比较,例如汉明(7,4)和RS(31,29)。模拟结果表明,所提出的方法的功效产生4.093 dB的编码增益(CG),其参数选择在BER的AWGN通道中的AWGN通道中的参数选择,与0.561 dB和1.485的CG相比使用汉明(7,4)和Rs(31,29)获得的DB。此外,上述标准代码分别具有75%和6.9%的冗余,而具有上述参数的提议代码达到23.81%的压缩。还提供了对应于上述每个方案的能量消耗的量化以证明所提出的技术的能量效率。

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