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Energy-Aware Lossless Data Compression

机译:能源感知的无损数据压缩

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Wireless transmission of a single bit can require over 1000 times more energy than a single 32-bit computation. It can therefore be beneficial to perform additional computation to reduce the number of bits transmitted. If the energy required to compress data is less than the energy required to send it, there is a net energy savings and an increase in battery life for portable computers. This article presents a study of the energy savings possible by losslessly compressing data prior to transmission. A variety of algorithms were measured on a StrongARM SA-110 processor. This work demonstrates that, with several typical compression algorithms, there is a actually a net energy increase when compression is applied before transmission. Reasons for this increase are explained and suggestions are made to avoid it. One such energy-aware suggestion is asymmetric compression, the use of one compression algorithm on the transmit side and a different algorithm for the receive path. By choosing the lowest-energy compressor and decompressor on the test platform, overall energy to send and receive data can be reduced by 11% compared with a well-chosen symmetric pair, or up to 57% over the default symmetric zlib scheme.
机译:单个位的无线传输所需要的能量比单个32位计算要多1000倍。因此,执行附加计算以减少发送的位数可能是有益的。如果压缩数据所需的能量少于发送数据所需的能量,则可以节省净能量,并可以延长便携式计算机的电池寿命。本文介绍了通过在传输之前无损压缩数据来实现节能的研究。在StrongARM SA-110处理器上测量了多种算法。这项工作表明,使用几种典型的压缩算法,在传输之前进行压缩时实际上会增加净能量。解释了这种增加的原因,并提出了避免这种情况的建议。一种这样的能量感知建议是非对称压缩,在发送侧使用一种压缩算法,而对于接收路径使用另一种算法。通过在测试平台上选择能耗最低的压缩器和解压缩器,与选择好的对称对相比,可以将发送和接收数据的总能量减少11%,比默认的对称zlib方案减少多达57%。

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