A Comparative Experimental Study of Lossless Compression Algorithms for Enhancing Energy Efficiency in Smart Meters

Julien Spiegel, P. Wira, Gilles Hermann
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引用次数: 15

Abstract

An experimental comparative study of data compression algorithms is investigated for enhancing energy efficiency in low-powered smart meters. Data compression is able to reduce the RF communication time. We also propose a new lossless compression algorithm to achieve the best tradeoff between the compression ratio and computational costs. The performance of our proposed Run-Length Binary Encoding (RLBE) algorithm is compared to those obtained with other lossless compression algorithms: Huffman coding, Even-Rodeh, Exponential-Golomb, Lempel-Ziv Welch, Fibonacci coding, and the hybrid Bzip2 algorithm. The energy optimization in data transmission has been achieved under different operating conditions. The performance of each compression algorithms has been verified experimentally with real metering datasets from industrial and domestic cases.
提高智能电表能效的无损压缩算法对比实验研究
为提高低功耗智能电表的能效,对数据压缩算法进行了实验对比研究。数据压缩能够减少射频通信时间。我们还提出了一种新的无损压缩算法,以达到压缩比和计算成本之间的最佳平衡。我们提出的运行长度二进制编码(RLBE)算法的性能与其他无损压缩算法的性能进行了比较:Huffman编码、Even-Rodeh、Exponential-Golomb、Lempel-Ziv Welch、Fibonacci编码和混合Bzip2算法。在不同的运行条件下,实现了数据传输中的能量优化。每种压缩算法的性能都用工业和国内的实际计量数据集进行了实验验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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