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The achievable accuracy in estimating the instantaneous phase and frequency of a constant amplitude signal

机译:估计恒定幅度信号的瞬时相位和频率时可达到的精度

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摘要

The approach is based on modeling the signal phase by a polynomial function of time on a finite interval. The phase polynomial is expressed as a linear combination of the Legendre basis polynomials. First, the Cramer-Rao bound (CRB) of the instantaneous phase and frequency of constant-amplitude polynomial-phase signals is derived. Then some properties of the CRBs are used to estimate the order of magnitude of the bounds. The analysis is extended to signals whose phase and frequency are continuous but not polynomial. The CRB can be achieved asymptotically if the estimation of the phase coefficients is done by maximum likelihood. The maximum-likelihood estimates are used to show that the achievable accuracy in phase and frequency estimation is determined by the CRB of the polynomial coefficients and the deviation of true phase and frequency from the polynomial approximations.
机译:该方法基于在有限间隔上通过时间的多项式函数对信号相位建模的方法。相位多项式表示为勒让德基础多项式的线性组合。首先,推导恒定幅度多项式相位信号的瞬时相位和频率的克莱默-拉奥边界(CRB)。然后,使用CRB的某些属性来估计边界的数量级。分析扩展到相位和频率连续但不是多项式的信号。如果通过最大似然来估计相位系数,则​​可以渐近实现CRB。最大似然估计用于表明,相位和频率估计的可实现精度由多项式系数的CRB和真实相位和频率与多项式近似的偏差决定。

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