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Resource Allocation with Adaptive Spread Spectrum OFDM Using 2D Spreading for Power Line Communications

机译:电力线通信中使用二维扩频的自适应扩频OFDM资源分配

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Bit-loading techniques based on orthogonal frequency division mutiplexing (OFDM) are frequently used over wireline channels. In the power line context, channel state information can reasonably be obtained at both transmitter and receiver sides, and adaptive loading can advantageously be carried out. In this paper, we propose to apply loading principles to an spread spectrum OFDM (SS-OFDM) waveform which is a multicarrier system using 2D spreading in the time and frequency domains. The presented algorithm handles the subcarriers, spreading codes, bits and energies assignment in order to maximize the data rate and the range of the communication system. The optimization is realized at a target symbol error rate and under spectral mask constraint as usually imposed. The analytical study shows that the merging principle realized by the spreading code improves the rate and the range of the discrete multitone (DMT) system in single and multiuser contexts. Simulations have been run over measured power line communication (PLC) channel responses and highlight that the proposed system is all the more interesting than the received signal-to-noise ratio (SNR) is low.
机译:在有线信道上经常使用基于正交频分复用(OFDM)的位加载技术。在电力线环境中,可以在发送器和接收器端合理地获得信道状态信息,并且可以有利地执行自适应负载。在本文中,我们建议将加载原理应用于扩频OFDM(SS-OFDM)波形,该波形是在时域和频域中使用2D扩展的多载波系统。所提出的算法处理子载波,扩展码,比特和能量分配,以便最大化数据速率和通信系统的范围。该优化是在目标符号错误​​率和通常所施加的频谱模板约束下实现的。分析研究表明,在单用户和多用户环境中,扩展代码实现的合并原理提高了离散多音(DMT)系统的速率和范围。在测量的电力线通信(PLC)通道响应上进行了仿真,并强调了所提出的系统比接收到的信噪比(SNR)低很有趣。

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