2015/06/16 by E. Rubiola, Rubiola, E., M. Lenczner +5
Physics and Astronomy · #Data Analysis #FOS: Physical sciences #Instrumentation and Detectors (physics.ins-det) #Statistics and Probability (physics.data-an) #physics.data-an #physics.ins-det
paper · pdf · doi:10.48550/arxiv.1506.05009
8 pages, 6 figure, 2 tables
arxiv created 2015/06/16 · arxiv updated 2015/06/17
This article introduces the Ω counter, a frequency counter -- or a frequency-to-digital converter, in a different jargon -- based on the Linear Regression (LR) algorithm on time stamps. We discuss the noise of the electronics. We derive the statistical properties of the Ω counter on rigorous mathematical basis, including the weighted measure and the frequency response. We describe an implementation based on a SoC, under test in our laboratory, and we compare the Ω counter to the traditional Π and Λ counters. The LR exhibits optimum rejection of white phase noise, superior to that of the Π and Λ counters. White noise is the major practical problem of wideband digital electronics, both in the instrument internal circuits and in the fast processes which we may want to measure. The Ω counter finds a natural application in the measurement of the Parabolic Variance, described in the companion article arXiv:1506.00687 [physics.data-an].