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Analysis of time and frequency synchronization error for wireless systems using OFDM

机译:使用OFDM的无线系统的时间和频率同步误差分析

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Due to frequency-selective and time-variant property of wireless channel together with additive noise and mismatch of oscillators between transmitter and receiver, there are always time and frequency synchronization errors in a practical OFDM system. To investigate the effect of the two kinds of errors on system performance, the average normalized interference power (NIP) is defined. A simple supper bound for NIP caused by time synchronization error (TSE) and the tighter upper bound for NIP resulting from frequency synchronization error (FSE) are derived independently. Simulations in typical short wave (SW) and medium wave (MW) channels further verify the correctness and tightness of these upper bounds. They actually provide good approximations to NIPs. Moreover, the upper bound for NIP resulting from FSE is tighter than traditional upper bound. Additionally, a new solution is proposed to relax the precision requirement for time synchronization algorithm, which can achieve a better tradeoff between time synchronization precision and bandwidth efficiency. These upper bounds will be useful in developing and choosing time and frequency synchronization algorithms in OFDM system to achieve a specific NIP value for a given channel condition.
机译:由于无线信道的频率选择和时变特性,以及附加噪声和发射器与接收器之间的振荡器不匹配,在实际的OFDM系统中始终存在时间和频率同步误差。为了研究这两种错误对系统性能的影响,定义了平均归一化干扰功率(NIP)。由时间同步误差(TSE)引起的NIP的简单上限和由频率同步误差(FSE)引起的NIP的上限更加严格。在典型的短波(SW)和中波(MW)通道中进行的仿真进一步验证了这些上限的正确性和紧密性。它们实际上为NIP提供了很好的近似值。而且,由FSE产生的NIP的上限比传统的上限更严格。另外,提出了一种新的解决方案来放宽对时间同步算法的精度要求,从而可以在时间同步精度和带宽效率之间取得更好的平衡。这些上限对于在OFDM系统中开发和选择时间和频率同步算法以实现给定信道条件下的特定NIP值很有用。

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