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ACOUSTO-OPTIC CYCLOSTATIONARY SIGNAL PROCESSING

机译:声光循环信号处理

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摘要

Cyclostationary signal-processing techniques implemented by means of acousto-optics are considered. Cyclic-processing methods are reviewed and motivated, such as the cyclic correlation and the cyclic spectrum. It is shown that the cyclic correlation can be computed at cycle frequencies of interest by use of one-dimensional time-integrating correlators in additive or multiplicative configurations. Detection of cycle frequencies is briefly considered, and a one-dimensional acousto-optic spectrum-analysis approach is described that is effective for amplitude-modulated signals. The problem of computing the two-dimensional cyclic correlation for all cycle frequencies and lags is then considered. This is accomplished by means of an acousto-optic triple-product processor configured in a manner similar to that used for ambiguity-function generation. The cyclic spectrum can be obtained in a postprocessing step by Fourier transformation of the cyclic correlation in one dimension. Higher-order extensions of the cyclic correlation are also discussed, and it is shown how a two-dimensional slice of the three-dimensional cyclic triple correlation can be computed by use of an acousto-optic four-product processor. [References: 19]
机译:考虑了通过声光实现的循环平稳信号处理技术。回顾并激发了循环处理方法,例如循环相关性和循环频谱。结果表明,通过使用加法或乘法配置中的一维时间积分相关器,可以在感兴趣的循环频率上计算出循环相关性。简要考虑了循环频率的检测,并描述了一种对幅度调制信号有效的一维声光频谱分析方法。然后考虑为所有循环频率和滞后计算二维循环相关性的问题。这是通过以类似于用于模糊函数生成的方式配置的声光三乘处理器来实现的。循环频谱可以在后处理步骤中通过在一维中对循环相关性进行傅立叶变换来获得。还讨论了循环相关性的高阶扩展,并说明了如何使用声光四乘处理器来计算三维循环三重相关性的二维切片。 [参考:19]

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