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Pulse parity modulation for impulse radio UWB transmission based on non-coherent detection

机译:基于非相干检测的脉冲奇偶脉冲调制脉冲无线电UWB传输

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摘要

To enhance the error performance of impulse radio UWB transceivers, we introduce in this manuscript a novel modulation scheme based on exploiting the symmetry properties of transmitted waveforms. Parity Modulation utilizes odd versus even pulses to represent binary data, while the detector relies on a time reverser and non-coherent cross correlator. The analytical expression of power spectral density has been derived; then, considering different orders of Gaussian derivatives as pulse waveforms, the spectral characteristics have been optimized to comply with the UWB emission regulation. The bit error rate formula in an AWGN channel has been developed, while our simulation measurements showed a significant performance gain for 2 Gbps Parity over 1 Gbps Pulse Position Modulation and 2 Gbps On Off Keying. A reference-based parity scheme has been eventually proposed to enhance robustness against multi-path effects, interesting results have been achieved in terms of error probability in a realistic channel, with a compromise between data rate and complexity. (C) 2020 Published by Elsevier B.V.
机译:为了增强脉冲无线电UWB收发器的误差性能,我们在本手稿中介绍了一种基于利用传输波形的对称性的新型调制方案。奇偶校验调制利用奇数与脉冲表示二进制数据,而检测器依赖于时间反向器和非相干交叉相关器。推导出功率谱密度的分析表达;然后,考虑到不同的高斯衍生物作为脉搏波形的顺序,已经优化了光谱特性以符合UWB排放调节。已经开发了AWGN通道中的误码率公式,而我们的模拟测量结果显示出2 Gbps奇偶校验的显着性能增益,超过1 Gbps脉冲位置调制和2 Gbps OFF键控。已经最终提出了一种基于参考的奇偶校验方案以增强对多路径效应的鲁棒性,在现实频道中的误差概率方面已经实现了有趣的结果,数据速率与复杂性之间的折衷。 (c)2020由elsevier b.v发布。

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