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Diffusion based molecular communications system enhancement using high order hamming codes

机译:使用高阶汉明码的基于扩散的分子通讯系统增强

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This work considers a performance enhancement technique that can be applied to diffusion based molecular communications systems. Comparisons are made between an un-coded system and coded system which uses Hamming codes up to an order of 10. The analysis is further advanced to consider the energy expenditure during the coding and decoding process. Results show that compared with un-coded system, down to a BER (Bit Error Rate) of 10, a coding gain can be obtained from using a Hamming code but importantly, the gain is shown to be non-linear such that, when one also considers energy requirements — an optimum code order exists. It is shown that for the scenarios considered here, Hamming (31,26) provides the shortest critical distance whilst Hamming (63,57) provides the largest coding gain. These results should resolve an open issue of how large a Hamming code can be used before it is self-defeating in nano-communications applications.
机译:这项工作考虑了可以应用于基于扩散的分子通信系统的性能增强技术。在未编码系统和使用汉明码(最高为10)的编码系统之间进行了比较。进一步进行了分析,以考虑编码和解码过程中的能量消耗。结果表明,与未编码的系统相比,低至BER(误码率)为10的编码增益可以通过使用汉明码获得,但重要的是,该增益显示为非线性,因此当一个还考虑了能量需求-存在最佳的代码顺序。结果表明,对于此处考虑的场景,汉明(31,26)提供了最短的临界距离,而汉明(63,57)提供了最大的编码增益。这些结果将解决一个悬而未决的问题,即汉明代码在纳米通信应用中自毁之前可以使用多大的代码。

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