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An exact formula for the maximum VCO sweep rate of a PLL

机译:PLL的最大VCO扫描速率的精确公式

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摘要

In many phase-locked loop (PLL) applications, the natural pull-in mechanism is too slow and unreliable, and it must be accelerated. By adding an externally-generated ramp to its control voltage input, the PLL voltage controlled oscillator (VCO) frequency can be swept towards the input reference frequency in an attempt to speed up the pull-in process. This popular acquisition aid has a significant limitation when it is used in a second-order, Type Ⅱ PLL. If the applied ramp voltage has a slope magnitude greater than (alternatively, less than) some value R_m, the PLL state can (alternatively, cannot) sweep past the desired lock point, resulting in a phase lock failure (alternatively, success). In general, the maximum sweep rate magnitude R_m can be computed by using a numerical integration-and-search procedure that is described in the PLL literature. A special case exists for a second-order, Type Ⅱ PLL that incorporates a triangular-characteristic phase detector (with logic-level binary input signals). For this case, it is possible to develop an exact, closed-form expression for R_m, the main result of this paper. For a range of loop parameters most often used in applications, R_m values are computed by using the exact formula, and these are used in two ways. First, they are used to validate the previously-mentioned numerical integration-and-search procedure. Second, they are compared to maximum sweep rate values computed for a PLL that utilizes a sinusoidal phase detector to show that the triangular-phase-detector PLL can be swept significantly faster than the sinusoidal-phase-detector loop.
机译:在许多锁相环(PLL)应用中,自然的引入机制太慢且不可靠,必须对其进行加速。通过在其控制电压输入端增加一个外部产生的斜坡,可以将PLL压控振荡器(VCO)频率扫向输入参考频率,以试图加快引入过程。当在二阶Ⅱ型PLL中使用时,这种流行的采集辅助设备有很大的局限性。如果施加的斜坡电压的斜率大小大于(或者小于)某个值R_m,则PLL状态可以(或者不能)扫过所需的锁定点,从而导致锁相失败(或者成功)。通常,可以使用PLL文献中描述的数字积分和搜索程序来计算最大扫描速率幅度R_m。对于二阶Ⅱ型PLL,存在一个特殊情况,该PLL集成了一个三角特性鉴相器(带有逻辑电平的二进制输入信号)。对于这种情况,有可能为R_m给出精确的,封闭形式的表达式,这是本文的主要结果。对于最经常在应用程序中使用的一系列循环参数,R_m值通过使用精确公式来计算,并且以两种方式使用它们。首先,它们用于验证前面提到的数值积分和搜索过程。其次,将它们与为使用正弦相位检测器的PLL计算的最大扫描速率值进行比较,以显示三角形相位检测器PLL的扫频速度明显快于正弦相位检测器环路。

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  • 来源
    《Journal of the Franklin Institute》 |2014年第9期|4495-4513|共19页
  • 作者单位

    DESE Research, Inc., Huntsville, AL 35805, USA. Department of Electrical and Computer Engineering, University of Alabama in Huntsville, Huntsville, AL 35899, USA;

    Department of Electrical and Computer Engineering, University of Alabama in Huntsville, Huntsville, AL 35899, USA;

    Department of Electrical and Computer Engineering, University of Alabama in Huntsville, Huntsville, AL 35899, USA;

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