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Ordered subcarrier selection algorithm for OFDM-based high-speed WLANs

机译:基于OFDM的高速WLAN的有序子载波选择算法。

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In this letter, a low-complexity and low-overhead adaptive bit-loading algorithm for wireless multicarrier schemes is proposed and analyzed. It is based on the diversity gain obtained through the ordering and selection of the more reliable subcarriers. Higher order modulations are used to compensate for the reduced subcarrier utilization. On the contrary to other bit-loading algorithms, it does not require nonuniform bit and power level allocation among subcarriers, thus drastically reducing the modem hardware complexity and making it attractive as a possible extension of existing high-speed wireless local-area network standards. System performance is analyzed in different configurations and conditions, including a realistic 5-GHz propagation scenario. Comparison with optimal adapted and unadapted solutions is also made. Finally, the effect of unideal feedback of the channel state information is analyzed showing the robustness and the low overhead required of the new scheme.
机译:本文提出并分析了一种用于无线多载波方案的低复杂度,低开销的自适应比特加载算法。它基于通过更可靠的子载波的排序和选择获得的分集增益。使用更高阶的调制来补偿子载波利用率的降低。与其他位加载算法相反,它不需要在子载波之间进行不均匀的位和功率级别分配,从而极大地降低了调制解调器的硬件复杂性,使其成为现有高速无线局域网标准的可能扩展。在不同的配置和条件下分析系统性能,包括实际的5 GHz传播方案。还与最佳适应和不适应解决方案进行了比较。最后,分析了信道状态信息的不理想反馈的影响,显示了新方案的鲁棒性和较低的开销。

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