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New implementations of the time-reversed precoders for UWB communication system

机译:UWB通信系统中时间反向预编码器的新实现

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Ultra-wideband communications system with pre-coders based on time-reverse channel impulse response have been shown to yield improved bit error rate performance for a given signal to noise ratio. However, as the channel impulse response is usually quite long, the implementation of the full time-reversed precoders involves high implementation complexity. We propose two implementation methods that will reduce the implementation complexity. In the first method, representation of the impulse response by fewer number of bits such as 1, 2, 4 and 6 is considered. In the next method, the channel impulse response is modeled using autoregressive moving average model obtained using Prony method. Two implementations, namely time reversed Prony precoder model and data reversed Prony precoder model, are investigated. The performances of the communication system for various channel models CM1, CM2, CM3 and CM4, as presented in IEEE 802.15.3a, with different precoder models were obtained using simulation. It was observed that data reversal based implementation of Prony model precoder was able to produce the same level of Bit Error Rate (BER) performance with reduced implementation complexity compared to non-recursive implementation. The simulation results for the various cases of the partial precoders are presented.
机译:具有基于时间反向信道脉冲响应的预编码器的超宽带通信系统已显示出,对于给定的信噪比,该系统可产生改善的误码率性能。但是,由于信道脉冲响应通常很长,因此全时间反转预编码器的实现涉及很高的实现复杂性。我们提出了两种实现方法,它们可以降低实现的复杂性。在第一种方法中,考虑通过较少数量的位(例如1、2、4和6)来表示脉冲响应。在下一种方法中,使用通过Prony方法获得的自回归移动平均模型对信道脉冲响应进行建模。研究了两种实现方式,即时间逆Prony预编码器模型和数据逆Prony预编码器模型。通过仿真获得了IEEE 802.15.3a中针对不同信道模型CM1,CM2,CM3和CM4的通信系统的性能,以及不同的预编码器模型。据观察,与非递归实现相比,基于数据反转的Prony模型预编码器实现能够产生相同级别的误码率(BER)性能,并且实现复杂性降低。给出了部分预编码器各种情况的仿真结果。

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