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Interaction between Symbol Timing Offset and Channel Interpolation in OFDM Systems: BER Analysis and Performance Degradation

机译:OFDM系统中符号定时偏移和信道插值之间的相互作用:BER分析和性能下降

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摘要

In orthogonal frequency division multiplexing (OFDM) systems, since the cyclic prefix (CP) is designed to be longer than the channel impulse response, there exists a certain range within the CP where symbol timing synchronization can be accomplished avoiding adjacent inter symbol interference. However, the appearance of a linear phase term across subcarriers in the frequency-domain due to symbol timing offset (STO) is known to affect the performance of channel interpolation. In this paper, we analyze the performance degradation due to the interaction between STO and channel interpolation in OFDM systems affected by multipath Rayleigh fading. Particularly, simple closed-form expressions for the bit error rate (BER) are obtained for different quadrature amplitude modulation constellations. Results show that there exists an irreducible BER floor due to STO and channel interpolation, which depends on the STO, the subcarrier index, the pilot spacing and the correlation between pilot subcarriers.
机译:在正交频分复用(OFDM)系统中,由于循环前缀(CP)被设计为比信道脉冲响应更长,因此在CP内存在一定范围,在该范围内可以实现符号定时同步以避免相邻符号间干扰。然而,由于符号定时偏移(STO),频域中跨子载波的​​线性相位项的出现已知会影响信道插值的性能。在本文中,我们分析了在多径瑞利衰落影响下的OFDM系统中,由于STO和信道插值之间的相互作用而导致的性能下降。特别是,对于不同的正交幅度调制星座图,可以获得误码率(BER)的简单封闭式表达式。结果表明,由于STO和信道插值,存在一个不可减少的BER底线,它取决于STO,子载波索引,导频间隔以及导频子载波之间的相关性。

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