Title of article
Implementation of a real-time adaptive digital shaping for nuclear spectroscopy
Author/Authors
Regadيo، نويسنده , , Alberto and Sلnchez-Prieto، نويسنده , , Sebastiلn and Prieto، نويسنده , , Manuel and Tabero، نويسنده , , Jesْs، نويسنده ,
Pages
7
From page
297
To page
303
Abstract
This paper presents the structure, design and implementation of a new adaptive digital shaper for processing the pulses generated in nuclear particle detectors. The proposed adaptive algorithm has the capacity to automatically adjust the coefficients for shaping an input signal with a desired profile in real-time. Typical shapers such as triangular, trapezoidal or cusp-like ones can be generated, but more exotic unipolar shaping could also be performed. A practical prototype was designed, implemented and tested in a Field Programmable Gate Array (FPGA). Particular attention was paid to the amount of internal FPGA resources required and to the sampling rate, making the design as simple as possible in order to minimize power consumption. Lastly, its performance and capabilities were measured using simulations and a real benchmark.
Keywords
adaptive , FPGA , Spectroscopy , Nuclear detectors , Signal Processing , Shaping
Journal title
Astroparticle Physics
Record number
2010920
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