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Iterative Detection for Pretransformed OFDM by Subcarrier Reconstruction

机译:通过子载波重构对预变换OFDM的迭代检测

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摘要

In this paper, an iterative detection method for an uncoded pretransformed (PT) orthogonal frequency division multiplexing (OFDM) system where the channel is not known at the transmitter is proposed. The iterative detection starts with linear detection. The noiseless received signal at the weakest subcarrier (corresponding to the smallest channel amplitude) is estimated based on all the detected data symbols using a hard or soft decision. Then, the actual received signal at the weakest subcarrier is replaced by the estimated one. This process is referred to as reconstruction here. After reconstruction, linear detection is carried out again to generate the next set of symbol estimates. The whole process proceeds iteratively to reconstruct the received signal at the next-weakest subcarrier. The transform coefficients and the iterative process are designed to maximize the minimum signal-to-noise power ratio. Under the assumption that the previous detection is error free, it is shown analytically that the iterative method achieves a diversity advantage of i + 1 in the ith iteration, thus providing an explanation of its superior performance. Due to the flexibility of the transform design, the analysis conducted is applicable for other common systems as well. Simulations in realistic channels are carried out, and the bit-error rate performance of the iterative detection is superior as compared to that of the conventional detectors for the PT-OFDM or OFDM system.
机译:在本文中,提出了一种在发射机处信道未知的未编码预变换(PT)正交频分复用(OFDM)系统中的迭代检测方法。迭代检测从线性检测开始。基于所有检测到的数据符号,使用硬判决或软判决来估计最弱子载波(对应于最小信道幅度)处的无噪声接收信号。然后,将最弱子载波处的实际接收信号替换为估计的信号。此过程在此称为重建。重建后,再次执行线性检测以生成下一组符号估计。整个过程反复进行,以重建次弱子载波上的接收信号。设计变换系数和迭代过程以使最小信噪功率比最大化。在先前检测没有错误的假设下,分析表明迭代方法在第i次迭代中获得了i + 1的多样性优势,从而提供了其优越性能的解释。由于转换设计的灵活性,因此进行的分析也适用于其他常见系统。进行了现实信道中的仿真,并且与用于PT-OFDM或OFDM系统的常规检测器相比,迭代检测的误码率性能更高。

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