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Energy requirements of error correction codes in diffusion-based molecular communication systems

机译:基于扩散的分子通信系统中误差校正码的能量要求

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摘要

Molecular Communications is a promising area with significant potential applications. To enhance the reliability of the transmission process, self-orthogonal convolutional codes (SOCCs) are proposed and investigated with respect to both bit error rate (BER) and energy efficiency. The codes are compared to both an un-coded system and one that employs Hamming codes to show that they can provide a benefit for molecular communication systems. The influence of the channel memory is also analysed in this paper. In addition, taking into account the extra energy required to implement the coding, the critical distance is investigated as another performance metric for nano-to-nano device communication, nano-to-macro device communication and macro-to-nano device communication. Considering the transmission distance and the operating BER of the designed system, the designer can determine whether the use of coding is beneficial or which code better suits the system.
机译:分子通信是一个有巨大潜力的潜在应用领域。为了提高传输过程的可靠性,提出了自正交卷积码(SOCC),并针对误码率(BER)和能量效率进行了研究。将该代码与未编码系统和采用汉明码的系统进行比较,以表明它们可以为分子通信系统带来好处。本文还分析了通道存储器的影响。另外,考虑到实现编码所需的额外能量,临界距离被研究为纳米到纳米设备通信,纳米到宏设备通信和宏到纳米设备通信的另一个性能指标。考虑到所设计系统的传输距离和工作BER,设计人员可以确定编码的使用是否有益或哪种编码更适合该系统。

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