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A New Data Rotation Based CP Synchronization Scheme for OFDM Systems

机译:一种新的基于数据旋转的OFDM系统CP同步方案

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In this paper, a new data rotation scheme for improving the symbol timing and carrier frequency offset (CFO) estimation of orthogonal frequency-division multiplexing (OFDM) systems is proposed. The new data rotation scheme intentionally introduces a cyclic shift after the inverse fast Fourier transform (IFFT) in the transmitter so that a higher energy cyclic prefix (CP) is obtained. This cyclic shift will not impair the orthogonality among the subcarriers and will only results in phase shift in the demodulated signal at the receiver. To recover the cyclic shift and for data detection, the scheme makes use of double differential encoding and decoding at the transmitter and the receiver. We analyze the performance of the new data rotation scheme by using order statistics theory. Our results show that the new scheme can provide a 1.6 dB gain in the performance of the CFO estimator and a 6 dB gain for the timing estimator at 15 dB SNR over AWGN channel, as well as a 6 dB gain in lock-in probability and a 4 dB gain in CFO performance at 5 dB SNR over frequency selective fading channel.
机译:本文提出了一种新的数据轮换方案,用于改善正交频分复用(OFDM)系统的符号定时和载波频偏(CFO)估计。新的数据旋转方案有意在发射机中进行快速傅立叶逆变换(IFFT)之后引入循环移位,从而获得了更高能量的循环前缀(CP)。该循环移位将不会损害子载波之间的正交性,只会导致接收机处解调信号的相移。为了恢复循环移位并用于数据检测,该方案在发射机和接收机处使用了双差分编码和解码。我们使用顺序统计理论分析了新数据轮换方案的性能。我们的结果表明,新方案可以在AWGN通道上以15 dB SNR的CFO估计器性能提供1.6 dB的增益,为时序估计器提供6 dB的增益,并在锁定概率和在频率选择性衰落信道上,在5 dB SNR时CFO性能提高了4 dB。

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