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Coherent detection of turbo coded OFDM signals transmitted through frequency selective Rayleigh fading channels

机译:通过频率选择性瑞利衰落信道传输的Turbo编码OFDM信号的相干检测

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This work addresses the problem of coherently detecting turbo coded orthogonal frequency division multiplexed (OFDM) signals, transmitted through frequency selective Rayleigh fading channels. A single transmit and receive antenna is assumed. The channel output is distorted by a carrier frequency and phase offset, besides additive white Gaussian noise (AWGN). A new frame structure for OFDM, consisting of a known preamble, cyclic prefix and data is proposed. A filter that is matched to the preamble is used for start-of-frame (SoF) detection. A two-step ML detector for frequency-offset estimation is proposed, which has a much lower complexity compared to the single step ML detector. Turbo decoding and data interleaving is used to significantly enhance the bit-error-rate (BER) performance of the coherent receiver. Simulation results show that the BER performance of the practical coherent receiver is close to the ideal coherent receiver, for data length equal to the preamble length, and attains a BER of about 4× 10−5 at an SNR of just 8 dB. It is also shown that the probability of erasure is less than 10−6 for a preamble length of 512 QPSK symbols. The proposed algorithms are well suited for implementation on a DSP-platform.
机译:这项工作解决了相干检测通过频率选择性瑞利衰落信道传输的Turbo编码正交频分复用(OFDM)信号的问题。假设使用单个发射和接收天线。除加性高斯白噪声(AWGN)外,信道输出还会因载波频率和相位偏移而失真。提出了一种新的OFDM帧结构,该结构由已知的前同步码,循环前缀和数据组成。与前同步码匹配的过滤器用于帧开始(SoF)检测。提出了一种用于频率偏移估计的两步ML检测器,与单步ML检测器相比,其复杂度要低得多。 Turbo解码和数据交织用于显着增强相干接收机的误码率(BER)性能。仿真结果表明,在数据长度等于前导码长度的情况下,实际相干接收器的BER性能接近理想相干接收器,并且在SNR时可获得约4×10 −5 的BER。仅为8 dB。还显示出,对于512个QPSK符号的前同步码长度,擦除的概率小于10 -6 。所提出的算法非常适合在DSP平台上实现。

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