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Channel estimation based on frame control symbol re-encoding and re-mapping

机译:基于帧控制符号重新编码和重新映射的信道估计

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This work focuses on channel estimation in power line communications (PLC) systems. Considering the IEEE Standard 1901-2010 frame structure, data-aided channel estimation is performed on the preamble sequence. However, resolution of the preamble symbols compared to the Frame Control (FC) symbol and payload symbols (256 vs. 2048 subcarriers) leads to interpolation errors that tend to increase in presence of narrow-band interference (NBI). This work addresses channel estimation in standard IEEE 1901-2010 by re-encoding and re-mapping the FC symbol. The main contribution on this paper is to show that re-estimation of only the noise power spectral density (PSD) (and not the channel frequency response (CFR)) significantly improves system performance by using FC symbol as a new reference. This conclusion provides a feasible implementation in practical systems because the proposed solution does not lead to delays nor additional computational costs. Gain obtained by this update compared to preamble based channel estimation is substantial and system behavior, especially in the presence of NBI, improves considerably. A PLC system according to the standard IEEE 1901-2010 is used to evaluate our proposal. System performance is tested on multipath channels and narrow-band noise.
机译:这项工作侧重于电力线通信(PLC)系统中的信道估计。考虑到IEEE标准1901-2010帧结构,对前导序列执行数据辅助信道估计。然而,与帧控制(FC)符号和有效载荷符号相比的前导符号(256对2048个子载波)的分辨率导致插值误差趋于在窄带干扰(NBI)的存在中增加。该工作通过重新编码和重新映射FC符号来解决标准IEEE 1901-2010中的信道估计。本文的主要贡献是表明,只有噪声功率谱密度(PSD)(而不是信道频率响应(CFR))的重新估计通过使用FC符号作为新参考来显着提高系统性能。这一结论在实际系统中提供了可行的实现,因为所提出的解决方案不会导致延迟也不达到额外的计算成本。与基于前导码的信道估计相比,通过该更新获得的增益是大量的,并且系统行为,尤其是在NBI的存在中,显着提高。根据标准IEEE 1901-2010的PLC系统用于评估我们的建议。系统性能在多径通道和窄带噪声上进行测试。

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