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Properties of the IEEE-STD-1057 four-parameter sine wave fit algorithm

机译:IEEE-STD-1057四参数正弦波拟合算法的属性

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The IEEE Standard 1057 (IEEE-STD-1057) provides algorithms for fitting the parameters of a sine wave to noisy discrete time observations. The fit is obtained as an approximate minimizer of the sum of squared errors, i.e., the difference between observations and model output. The contributions of this paper include a comparison of the performance of the four-parameter algorithm in the standard with the Cramer-Rao lower bound on accuracy, and with the performance of a nonlinear least squares approach. It is shown that the algorithm of IEEE-STD-1057 provides accurate estimates for Gaussian and quantization noise. In the Gaussian scenario it provides estimates with performance close to the derived lower bound. In severe conditions with noisy data covering only a fraction of a period, however, it is shown to have inferior performance compared with a one-dimensional search of a concentrated cost function.
机译:IEEE标准1057(IEEE-STD-1057)提供了将正弦波参数拟合到嘈杂的离散时间观测值的算法。该拟合是平方误差总和(即观察值与模型输出之间的差异)的近似最小化值。本文的贡献包括将标准中的四参数算法的性能与Cramer-Rao精度下限以及非线性最小二乘法的性能进行比较。结果表明,IEEE-STD-1057算法可为高斯噪声和量化噪声提供准确的估计。在高斯场景中,它提供的估计性能接近导出的下限。但是,在噪声数据仅覆盖一小部分时间的恶劣条件下,与集中成本函数的一维搜索相比,它的性能较差。

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