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UWB Mixed-Signal Transform-Domain Direct-Sequence Receiver

机译:UWB混合信号变换域直接序列接收器

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We consider a mixed-signal ultra wideband (UWB) direct-sequence spread-spectrum (DS-SS) receiver. The receiver expands the signal over a basis set, and then operates on the basis coefficients. An analog computation of the basis coefficients efficiently parallelizes the signal for digital processing, relaxing the sampling requirements and enabling parallel digital processing at a much lower rate. Bit error rate (BER) performance is evaluated, as well as distortion due to basis truncation. The parallel processing also facilitates efficient interference mitigation. Various models for interference including adjacent multicarrier interference are developed and analyzed. Several simulation results confirm the analysis and provide insight into quantization error, basis truncation distortion, and the impact of the UWB channel. We show that in the AWGN uncoded case for SNR < 10 dB, the receiver can be operated at almost half the Nyquist rate with only 1 dB of performance loss. Moreover, when a common convolutional code is employed, the aggregate sampling rate can be 37.5% lower than Nyquist rate with little loss in receiver performance
机译:我们考虑了混合信号超宽带(UWB)直接序列扩频(DS-SS)接收机。接收器在基集上扩展信号,然后根据基系数进行运算。基本系数的模拟计算有效地并行化了信号以进行数字处理,从而放宽了采样要求,并以更低的速率实现了并行数字处理。评估误码率(BER)性能以及由于基数截断引起的失真。并行处理还有助于有效地减轻干扰。开发并分析了包括相邻多载波干扰在内的各种干扰模型。若干仿真结果证实了该分析,并提供了对量化误差,基本截断失真以及UWB信道影响的深入了解。我们表明,在SNR <10 dB的AWGN非编码情况下,接收机可以以几乎奈奎斯特速率的一半运行,而性能损失仅为1 dB。此外,当使用通用卷积码时,总采样率可以比奈奎斯特率低37.5%,而接收机性能几乎没有损失

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