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Performance Analysis for Channel Estimation With 1-Bit ADC and Unknown Quantization Threshold

机译:利用 1 位 ADC 和未知量化阈值进行通道估计的性能分析

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摘要

In this work, the problem of signal parameter estimation from measurements acquired by a low-complexity analog-to-digital converter (ADC) with 1-bit output resolution and an unknown quantization threshold is considered. Single-comparator ADCs are energy-efficient and can be operated at ultrahigh sampling rates. For analysis of such systems, a fixed and known quantization threshold is usually assumed. In the symmetric case, i.e., zero hard-limiting offset, it is known that in the low signal-to-noise ratio (SNR) regime the signal processing performance degrades moderately by 2/pi (-1.96 dB) when comparing to an ideal infinity-bit converter. Due to hardware imperfections, low-complexity 1-bit ADCs will, in practice, exhibit an unknown threshold different from zero. Therefore, we study the accuracy that can be obtained with received data processed by a hard-limiter with unknown quantization level by using asymptotically optimal channel estimation algorithms. To characterize the estimation performance of these nonlinear algorithms, we employ analytic error expressions for different setups while modeling the offset as a nuisance parameter. In the low SNR regime, we establish the necessary condition for a vanishing loss due to missing offset knowledge at the receiver. As an application, we consider the estimation of single-input single-output wireless channels with intersymbol interference and validate our analysis by comparing the analytic and experimental performance of the studied estimation algorithms. Finally, we comment on the extension to multiple-input multiple-output channel models.
机译:在这项工作中,考虑了具有 1 位输出分辨率和未知量化阈值的低复杂度模数转换器 (ADC) 采集的测量结果的信号参数估计问题。单比较器ADC具有高能效,可在超高采样速率下工作。对于此类系统的分析,通常假设一个固定且已知的量化阈值。在对称情况下,即零硬限制偏移,众所周知,在低信噪比(SNR)制度下,与理想的无穷大位转换器相比,信号处理性能会适度下降2/pi(-1.96 dB)。由于硬件缺陷,低复杂度1位ADC在实践中将表现出与零不同的未知阈值。因此,我们通过使用渐近最优信道估计算法,研究了由未知量化水平的硬限制器处理的接收数据可以获得的精度。为了表征这些非线性算法的估计性能,我们采用不同设置的分析误差表达式,同时将偏移建模为干扰参数。在低SNR制度下,我们建立了由于接收器上缺少失调知识而导致的损失消失的必要条件。作为一个应用,我们考虑了具有码间干扰的单输入单输出无线信道的估计,并通过比较所研究估计算法的分析和实验性能来验证我们的分析。最后,我们评论了对多输入多输出通道模型的扩展。

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