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    Effects of noisy and modulated interferers on the free-running oscillator spectrum

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    EffectsofNoisyandMod ... (469.3Kb)
    Identificadores
    URI: http://hdl.handle.net/10902/15605
    DOI: 10.1109/TMTT.2017.2786700
    ISSN: 0018-9480
    ISSN: 1557-9670
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    Autoría
    Sancho Lucio, Sergio MiguelAutoridad Unican; Pontón Lobete, María IsabelAutoridad Unican; Suárez Rodríguez, AlmudenaAutoridad Unican
    Fecha
    2018-04
    Derechos
    © 2018 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for all other uses, in any current or future media, including reprinting/republishing this material for advertising or promotional purposes, creating new collective works, for resale or redistribution to servers or lists, or reuse of any copyrighted component of this work in other works.
    Publicado en
    IEEE Transactions on Microwave Theory and Techniques, 2018, 66(4), 1831-1842
    IEEE MTT-S International Microwave Symposium (IMS), Honolulu, USA, 2017
    Editorial
    Institute of Electrical and Electronics Engineers Inc.
    Enlace a la publicación
    https://doi.org/10.1109/TMTT.2017.2786700
    Palabras clave
    Amplitude modulation
    Frequency-domain analysis
    Injection pulling
    Interferer
    Microwave oscillator
    Phase modulation
    Phase noise
    Resumen/Abstract
    A new methodology for the prediction of oscillator phase dynamics under the effect of an interference signal is presented. It is based on a semianalytical formulation in the presence of a noisy or modulated interferer, using a realistic oscillator model extracted from harmonic-balance simulations. The theoretical analysis of the phase process enables the derivation of key mathematical properties, used for an efficient calculation of the interfered-oscillator spectrum. The resulting quasi-periodic spectrum is predicted, as well as the impact of the interferer phase noise and modulation over each spectral component, in particular over the one at the fundamental frequency. It is demonstrated that under some conditions, the phase noise at this component is pulled to that of the interference signal. Resonance effects at multiples of the beat frequency are also predicted. In addition, the effects of interferer phase and amplitude modulation on the oscillator phase dynamics have been studied and compared. For that analysis, efficient simulation techniques have been developed. The analyses have been validated with experimental measurements in an FET-based oscillator at 2.5 GHz, obtaining excellent agreement.
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    UNIVERSIDAD DE CANTABRIA

    Repositorio realizado por la Biblioteca Universitaria utilizando DSpace software
    Contacto | Sugerencias
    Metadatos sujetos a:licencia de Creative Commons Reconocimiento 4.0 España