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Accurate Sine-Wave Amplitude Measurements Using Nonlinearly Quantized Data

机译:使用非线性量化数据的精确正弦波幅度测量

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摘要

The estimation of the amplitude of a sine wave from the sequence of its quantized samples is a typical problem in instrumentation and measurement. A standard approach for its solution makes use of a least squares estimator (LSE) that, however, does not perform optimally in the presence of quantization errors. In fact, if the quantization error cannot be modeled as an additive , as it often happens in practice, the LSE returns biased estimates. In this paper, we consider the estimation of the amplitude of a noisy sine wave after quantization. The proposed technique is based on a uniform distribution of signal phases and it does not require that the quantizer has equally spaced transition levels. The experimental results show that this technique removes the estimation bias associated with the usage of the LSE and that it is sufficiently robust with respect to small uncertainties in the known values of transition levels.
机译:根据其量化样本序列估算正弦波的幅度是仪器和测量中的典型问题。解决方案的标准方法是使用最小二乘估计器(LSE),但是,在存在量化误差的情况下,该方法不能达到最佳性能。实际上,如果不能将量化误差建模为累加模型(在实践中经常发生),则LSE会返回有偏差的估计值。在本文中,我们考虑了量化后对噪声正弦波幅度的估计。所提出的技术基于信号相位的均匀分布,并且不需要量化器具有相等间隔的过渡电平。实验结果表明,该技术消除了与LSE的使用相关的估计偏差,并且对于已知的过渡水平值中的小不确定性,该技术具有足够的鲁棒性。

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