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Analysis and Experimental Validation of Efficient Coded OFDM for an Impulsive Noise Environment

机译:脉冲噪声环境下高效编码OFDM的分析与实验验证

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摘要

The importance of synergy with industry lies in the possibility of experimental validation of the work research results. With Software-Defined Radio (SDR) platforms, it is possible to implement a physical layer and to have tests with hardware in a real environment. In this paper, we investigate the validation of an impulsive noise resistant physical layer based on Orthogonal Frequency Division Multiplexing (OFDM) and an interesting concatenation of forward error correcting codes: Rank metric Code (RC) and Convolutional Code (CC). We fully design and implement a new block namely RC Encoder + WiFi Mapper in GNU Radio, which acts as a forward error correcting code to mitigate impulsive noise occurring in substations. After showing by simulations that using this coding scheme is very efficient in mitigating the bursty nature of impulsive noise, we then confirm that the same performance is maintained even with various impulsive voltages and experimental scenarios, which confirms the high performance of the proposed approach.
机译:与行业协同的重要性在于对工作研究结果进行实验验证的可能性。借助软件定义无线电(SDR)平台,可以在实际环境中实现物理层并使用硬件进行测试。在本文中,我们研究了基于正交频分复用(OFDM)和前向纠错码(秩度量码(RC)和卷积码(CC))的有趣级联的抗脉冲噪声物理层的验证。我们完全设计并实现了一个新模块,即GNU Radio中的RC编码器+ WiFi映射器,它充当前向纠错码,以减轻变电站中出现的脉冲噪声。通过仿真显示使用这种编码方案在缓解脉冲噪声的突发性方面非常有效,然后我们确认即使在各种脉冲电压和实验场景下也可以保持相同的性能,这证实了所提出方法的高性能。

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