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Wideband correlation-like operations using systems with time-varying coefficients

机译:使用具有时变系数的系统的宽带相关类运算

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A new alternative to cross-correlation is examined which forms the basis for developing analogue hardware systems designed to operate in the GHz range, beyond the point where digital spectral methods are realistic. The methodology is designed to realise the time resolution and noise rejection capabilities of wideband modulation by chirps, PRBS or wavelet functions when combined with cross-correlation detection, but without the need for modulation. This approach should be of special relevance for optical radar applications where technical limitations of modulators make it difficult to take advantage of the benefits of wideband modulation schemes. The technique offers a considerable increase in the time resolution available from conventional cross-correlation using unmodulated signals. The approach is based upon parametric control of the impulse response of filters with time-varying coefficients which transform the bandwidth of the input signals and exploits recent developments in the theory of the frequency response functions of such systems. There can be no exact analogue between time-varying coefficient systems and their more traditional constant coefficient counterparts, however the CTR filter has some similarities with an ensemble of constant coefficient functions embedded in a correlation architecture and with a wideband coherent detector.
机译:研究了互相关的新替代方法,该方法为开发设计为在GHz范围内运行的模拟硬件系统奠定了基础,而超出了数字频谱方法的现实范围。该方法旨在与chi相关检测结合使用而无需调制时,通过chi,PRBS或小波函数实现宽带调制的时间分辨率和噪声抑制能力。对于调制器的技术局限性使其难以利用宽带调制方案的优势的光学雷达应用,这种方法应具有特殊的意义。该技术极大地提高了使用未调制信号的常规互相关可提供的时间分辨率。该方法基于具有时变系数的滤波器的脉冲响应的参数控制,该参数改变了输入信号的带宽并利用了此类系统的频率响应函数理论的最新进展。时变系数系统与其更传统的常数系数对应物之间没有精确的模拟,但是CTR滤波器与嵌入在相关架构中的常数系数函数集合以及宽带相干检测器具有某些相似之处。

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