Analytical Derivation of Quantization Error in Threshold Level Quantizers Using Bipolar PFM

Fuente: arXiv
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Hauptverfasser: Carrero, Ricardo, Garvi, Ruben, Hernandez, Luis
Format: Preprint
Veröffentlicht: 2026
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author Carrero, Ricardo
Garvi, Ruben
Hernandez, Luis
author_facet Carrero, Ricardo
Garvi, Ruben
Hernandez, Luis
contents Uniform quantization is a topic that has been extensively studied. However and although an analytical description of quantization noise has been proposed, most descriptions of the spectral properties of quantization error resort to statistical descriptions. In this paper, we show how the spectrum of a quantized signal can be expressed using pulse frequency modulation. We first establish the equivalence of a uniform quantizer with a system based on the bipolar pulse frequency modulation and we define afterwards the Fourier transform of the quantized signal using pulse frequency modulation properties. This model brings a more intuitive understanding of the spectral structure of quantization noise and complements prior research in the topic. The results of the paper can be directly applied to level crossing ADCs with zero-order-hold interpolators, giving an accurate estimation of their performance.
format Preprint
id arxiv_https___arxiv_org_abs_2602_17471
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Analytical Derivation of Quantization Error in Threshold Level Quantizers Using Bipolar PFM
Carrero, Ricardo
Garvi, Ruben
Hernandez, Luis
Signal Processing
Uniform quantization is a topic that has been extensively studied. However and although an analytical description of quantization noise has been proposed, most descriptions of the spectral properties of quantization error resort to statistical descriptions. In this paper, we show how the spectrum of a quantized signal can be expressed using pulse frequency modulation. We first establish the equivalence of a uniform quantizer with a system based on the bipolar pulse frequency modulation and we define afterwards the Fourier transform of the quantized signal using pulse frequency modulation properties. This model brings a more intuitive understanding of the spectral structure of quantization noise and complements prior research in the topic. The results of the paper can be directly applied to level crossing ADCs with zero-order-hold interpolators, giving an accurate estimation of their performance.
title Analytical Derivation of Quantization Error in Threshold Level Quantizers Using Bipolar PFM
topic Signal Processing
url https://arxiv.org/abs/2602.17471