Title :
Computing the half-plane pull-in range of a PLL
Author_Institution :
Electr. & Comput. Eng., Univ. of Alabama Huntsville, Huntsville, AL, USA
Abstract :
A second-order PLL based on a triangular-characteristic phase detector and lead-lag loop filter is found in many applications where simplicity and economics are important. For these loops, the half-plane pull-in range ¿2 is of interest. In the existing literature, an algorithm is described for approximating ¿2; it requires the numerical integration of the nonlinear differential equation that describes the PLL. This numerical integration requirement is removed here by the development of an exact formula for ¿2.
Keywords :
filters; nonlinear differential equations; phase detectors; phase locked loops; half-plane pull-in range computing; lead-lag loop filter; nonlinear differential equation; numerical integration; phase detector; second-order PLL; triangular characteristic; Detectors; Differential equations; Filtering theory; Filters; Frequency; H infinity control; Limit-cycles; Phase detection; Phase locked loops; Voltage-controlled oscillators; Bifurcation; PLL; PLL Pull-In; Phase Lock-Loop; Separatrix Cycle;
Conference_Titel :
System Theory (SSST), 2010 42nd Southeastern Symposium on
Conference_Location :
Tyler, TX
Print_ISBN :
978-1-4244-5690-1
DOI :
10.1109/SSST.2010.5442810