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Synthesis of discrete time-varying null filters for frequency-varying signals using the time-warping technique

机译:使用时间扭曲技术合成用于时变信号的离散时变零滤波器

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A synthesis of two second-order discrete time-varying filters (DTVF), capable of suppressing a sine signal with arbitrary frequency variation, is presented. These structures are obtained by using the time-warping concept. A noise analysis is carried out for these two DTVFs and their performance is compared. It is shown that for the particular application considered, the rule of time-dependence of the DTVF (the synchronization) may be effectively obtained by using a phase-locked loop (PLL) system. As an example, the DTVF-PLL system is used for synchronous phase estimation of a sine wave corrupted by closely spaced FM interference. Simulation results are provided to substantiate the analysis and demonstrate the efficiency of the proposed time-varying system. The main feature of the TLM method is its formulation and programming simplicity. The method also generates a large amount of information; not only is the impulse response of a structure obtained, yielding in turn its response to any excitation, but the characteristics of the dominant and higher order modes are also accessible in the frequency domain through the Fourier transform.
机译:提出了两个可以抑制任意频率变化的正弦信号的二阶离散时变滤波器(DTVF)的合成。这些结构是通过使用时间扭曲概念获得的。对这两个DTVF进行了噪声分析,并比较了它们的性能。示出了对于所考虑的特定应用,可以通过使用锁相环(PLL)系统来有效地获得DTVF的时间依赖性(同步)规则。例如,DTVF-PLL系统用于同步相位估计,该相位被紧密间隔的FM干扰破坏的正弦波。提供仿真结果以证实分析并证明所提出的时变系统的效率。 TLM方法的主要特点是其公式化和编程简单。该方法还产生大量信息。不仅可以获得结构的脉冲响应,进而产生其对任何激发的响应,而且通过傅立叶变换还可以在频域中获得主导模式和更高阶模式的特性。

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