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Demodulation system and method for recovering a signal of interest from a modulated carrier sampled at two times the phase generated carrier frequency

机译:用于从以两倍于相位产生的载波频率采样的调制载波中恢复感兴趣信号的解调系统和方法

摘要

A demodulation system and method is used in a sensor system, such as a fiber optic sensor system, that senses optical signals and modulates a phase generated carrier having a carrier frequency c to form a modulated carrier. The modulated carrier is preferably undersampled at two times the carrier frequency (2c), thereby maximizing the sensors' demodulated bandwidth relative to the sensors' sampling frequency. The undersampled, modulated carrier is orthogonally demodulated by multiplying the modulated carrier by cos(2c(t0)) and sin(2c(t0)) to extract even and odd harmonic components of the signal of interest. The even and odd harmonic components of the signal of interest are further demodulated by taking the square root of the sum of squares of the even and odd harmonic components, normalizing the even and odd harmonic components, and differentiating, cross-multiplying and differencing the normalized even and odd harmonic components to recover the signal of interest.
机译:解调系统和方法用在诸如光纤传感器系统之类的传感器系统中,该传感器系统感测光信号并调制具有载波频率 c 的相位生成载波,以形成调制载波。调制载波最好以两倍于载波频率(2 c )的频率进行欠采样,从而相对于传感器的采样频率最大化传感器的解调带宽。欠采样的调制载波通过将调制载波乘以cos(2 c (t 0 ))和sin(2 c ( t 0 ))提取感兴趣信号的偶数和奇数谐波分量。通过获取偶数和奇数谐波分量的平方和的平方根,归一化偶数和奇数谐波分量,以及对归一化后的信号进行差分,交叉乘和差分,可以进一步解调感兴趣信号的偶数和奇数谐波分量。偶数和奇数谐波分量恢复感兴趣的信号。

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