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BER Minimized OFDM Systems With Channel Independent Precoders

机译:BER最小化OFDM系统,具有与通道无关的预编码器

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摘要

We consider the minimization of uncoded bit error rate (BER) for the orthogonal frequency division multiplexing (OFDM) system with an orthogonal precoder. We analyze the BER performance of precoded OFDM systems with zero forcing and minimum mean squared error (MMSE) receivers. In the case of MMSE receivers, we show that for quadrature phase shift keying (QPSK), there exists a class of optimal precoders that are channel independent. Examples of this class include the discrete Fourier transform (DFT) matrix and the Hadamard matrix. When the precoder is the DFT matrix, the resulting optimal transceiver becomes the single carrier system with cyclic prefix (SC-CP) system. We also show that the worst solution corresponds to the conventional OFDM system; the conventional OFDM system has the largest BER. In the case of zero forcing receivers, the design of optimal transceiver depends on signal-to-noise ratio (SNR). For higher SNR, solutions of optimal precoders are the same as those of MMSE receivers.
机译:我们考虑了使用正交预编码器的正交频分复用(OFDM)系统的未编码误码率(BER)的最小化。我们分析了具有零强迫和最小均方误差 (MMSE) 接收机的预编码 OFDM 系统的 BER 性能。在MMSE接收机的情况下,我们表明,对于正交相移键控(QPSK),存在一类与通道无关的最佳预编码器。此类的示例包括离散傅里叶变换 (DFT) 矩阵和 Hadamard 矩阵。当预编码器为DFT矩阵时,得到的最优收发器成为具有循环前缀(SC-CP)系统的单载波系统。我们还表明,最差的解决方案对应于传统的 OFDM 系统;传统的OFDM系统具有最大的误码率。在强制零接收机的情况下,最佳收发器的设计取决于信噪比(SNR)。对于更高的信噪比,最佳预编码器的解与MMSE接收机的解相同。

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