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Sphere Decoding for Unique Word OFDM

机译:唯一字OFDM的球面解码

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摘要

The recently presented UW-OFDM (Unique Word - orthogonal frequency division multiplexing) signaling scheme [1] uses certain subcarriers in frequency domain for redundant symbols instead of data, in order to generate a zero word in the DFT (discrete Fourier transform) interval in time domain. These redundant symbols depend on the data loaded on the other carriers and thus introduce correlation. The resulting linear system model enables sophisticated detectors for data recovery. As the best known maximum likelihood detector for this case, we applied the Sphere Decoding (SD) algorithm to a single antenna UW-OFDM system and evaluated its bit error performance in AWGN (additive white Gaussian noise) and frequency selective environments. Compared to linear receivers, the SD is able to take the correlations on the redundant subcarriers optimally into account and shows an enormous gain. A reduction of the redundant energy by increasing the number of redundant subcarriers improved the bit error performance of UW-OFDM systems with linear data estimators [2] at the price of a lower bandwidth efficiency. In contrast it is found, that a receiver based on Sphere Decoding is able to optimally exploit the excess redundant energy. The SD based system therefore shows its best performance at maximum bandwidth efficiency.
机译:最近提出的UW-OFDM(唯一字-正交频分复用)信令方案[1]在频域中将某些子载波用于冗余符号而不是数据,以便在DFT(离散傅里叶变换)间隔中生成零字。时域。这些冗余符号取决于加载在其他载波上的数据,因此引入了相关性。最终的线性系统模型使复杂的检测器能够恢复数据。作为这种情况下最著名的最大似然检测器,我们将球面解码(SD)算法应用于单天线UW-OFDM系统,并评估了其在AWGN(加性高斯白噪声)和频率选择环境下的误码性能。与线性接收机相比,SD能够最佳地考虑冗余子载波上的相关性,并显示出巨大的增益。通过增加冗余子载波的数量来减少冗余能量,以较低的带宽效率为代价,提高了带有线性数据估计器的UW-OFDM系统的误码性能[2]。相反,发现基于球形解码的接收机能够最佳地利用多余的冗余能量。因此,基于SD的系统在最大带宽效率下显示出最佳性能。

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