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Synchronization Using an Adaptive Early-Late Algorithm for IR-TH-UWB Transmission in Multipath Scenarios

机译:在多径情况下使用自适应早期算法进行IR-TH-UWB传输的同步

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Ultra-wide band (UWB) radio transmits data using sub-nanosecond pulses with a very low duty cycle. It is a promising candidate for short-range communications in dense multipath environments. However, due to the short length of the impulse signal, a very precise synchronization control is vital for the whole system. In this paper an adaptive algorithm using an Early-Late delay locked loop (DLL) is proposed to achieve frame synchronization in a multiuser multipath scenario. This concept has been studied by Gardner [2] [3]. Our main contribution is to extend the use of this DLL to a wide band signal. In this extension, instead of using the received signal as the input of the DLL, the output of an analog matched filter to the transmitted reference impulse is used. Consequently implementation is simplified. We investigate using 1 bit and 2 bit resolution samples in DLL. Simulation results indicate that the performance of DLL for 2 bit resolution is degraded by only 1dB at SNR of -20dB for 2 active users. It is also shown that the loop can maintain lock with the incoming signal at very low signal-to-noise ratio. In a dense multipath channel, performance is equivalent to that of a classical algorithm. It is also able to track variable timing delay.
机译:超宽带(UWB)无线电使用亚纳秒级脉冲以非常低的占空比发送数据。它是密集多径环境中短距离通信的有希望的候选者。但是,由于脉冲信号的长度较短,因此非常精确的同步控制对于整个系统至关重要。在本文中,提出了一种使用早期延迟锁定环(DLL)的自适应算法,以在多用户多径情况下实现帧同步。 Gardner [2] [3]已经研究了这个概念。我们的主要贡献是将该DLL的使用扩展到了宽带信号。在此扩展中,不是将接收到的信号用作DLL的输入,而是将模拟匹配滤波器的输出传输到参考脉冲。因此,简化了实施。我们调查了在DLL中使用1位和2位分辨率的样本。仿真结果表明,对于2个活跃用户,在-20dB的SNR下DLL的2位分辨率的性能仅降低1dB。还表明,环路可以以非常低的信噪比与输入信号保持锁定。在密集的多径信道中,性能等同于经典算法。它还能够跟踪可变的定时延迟。

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