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Time Synchronization for OFDM Systems in Very Dispersive Channels

机译:在非常分散通道中的OFDM系统的时间同步

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Orthogonal Frequency Division Multiplexing (OFDM) systems guarantee transmissions free from intersymbol interference (ISI) and interchannel interference (ICI) over frequency selective channels, provided that the channel delay spread is less than the duration of the cyclic-prefix (or the zero-padding guard interval). However, it is realistic to consider practical implementation scenarios in which the channel delay spread exceeds this limit so that both ISI and ICI do arise. We show that in such cases, the objective of symbol synchronization should be to maximize the ratio of the total useful received power over all subcarriers to the total power of ISI and ICI for the given channel realization, and that this aim can be achieved through a proper choice of the symbol timing. We also present a practical low-complexity synchronization scheme for this case and show that its performance tops the results obtained by the best existing correlation-based timing estimators. Furthermore, we determine upper bounds on the achievable signal-to-interference ratio based on the ideal assumptions of either perfect channel state information or at least knowledge of the channel statistical description, and show that they are very closely approached by the proposed method.
机译:正交频分复用(OFDM)系统保证无符号干扰(ISI)和Interchunnel干扰(ICI)在频率选择信道上的传输,条件是信道延迟扩展小于循环前缀的持续时间(或零填充保护间隔)。然而,考虑频道延迟扩展的实际实现方案是现实的,其中isi和ici都会出现。我们认为,在这种情况下,符号同步的目的应该是最大化所有子载波的总体有用接收功率的比率,以为给定的信道实现的ISI和ICI的总功率,并且这种目标可以通过A实现正确选择符号时序。我们还为这种情况呈现了实际的低复杂性同步方案,并表明其性能通过最佳的基于相关性的时序估算器获得的结果。此外,我们基于完美信道状态信息的理想假设或信道统计描述的理想假设来确定可实现的信号到干扰比上的上限,并且表明它们非常接近所提出的方法。

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