7 research outputs found

    Généralisation d'une nouvelle méthode de linéarisation d'amplificateurs de puissance avec mémoire

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    - Cet article présente une généralisation de la méthode de linéarisation des amplificateurs de puissance présentée dans [1]. Cette méthode est basée sur le modÚle de Hammerstein de l'amplificateur et permet d'éliminer totalement les produits d'intermodulation et les composantes harmoniques apportées par les distorsions de ce dernier, ainsi que de réduire l'élargissement spectral

    Linéarisation d'amplificateurs de puissance large bande par prédistorion adaptative en bande de base

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    Afin d'avoir une bonne autonomie du mobile, il est nĂ©cessaire d'utiliser un amplificateur de puissance Ă  rendement Ă©levĂ©. De plus, l'amplificateur doit ĂȘtre linĂ©aire afin de respecter les contraintes spectrales imposĂ©es par les normes. C'est pourquoi depuis quelques annĂ©es de nombreuses solutions ont Ă©tĂ© mises au point afin de linĂ©ariser un amplificateur fonctionnant Ă  rendement Ă©levĂ©. Le but de cette Ă©tude est de mettre au point un systĂšme complet de linĂ©arisation d'amplificateur de puissance destinĂ© Ă  une application radio-mobile. La technique proposĂ©e est originale et basĂ©e sur la prĂ©distorsion adaptative en bande de base. L'amplificateur est reprĂ©sentĂ© par le modĂšle de Hammerstein et la technique proposĂ©e se base sur ce modĂšle. Les rĂ©sultats obtenus en simulation montrent la capacitĂ© de cette mĂ©thode Ă  linĂ©ariser des amplificateurs de puissance. Les rĂ©sultats expĂ©rimentaux confirment la faisabilitĂ© et l'apport de cette nouvelle technique.In order to have a good autonomy with the mobile, it is necessary to use a high-efficiency power amplifier. Furthermore, the amplifier must be linear to respect the spectral constraints imposed by the telecommunications norms. That is why since several years, techniques to linearize a high efficient power amplifier have been proposed. The purpose of this study is to design a complete power amplifier linearization system destinated to radio-mobile application. This linearization technique is based on adaptive baseband predistortion. The amplifier is represented by Hammerstein model and the proposed adaptive predistortion technique is based on this model. Simulation results show the capacity of the method to linearize power amplifiers. Experimental results confirm the feasibility and the advantages of this new method.NANTES-BU Sciences (441092104) / SudocSudocFranceF

    Linéarisation d'amplificateurs de puissance large bande par prédistorion adaptative en bande de base

    No full text
    Afin d'avoir une bonne autonomie du mobile, il est nĂ©cessaire d'utiliser un amplificateur de puissance Ă  rendement Ă©levĂ©. De plus, l'amplificateur doit ĂȘtre linĂ©aire afin de respecter les contraintes spectrales imposĂ©es par les normes. C'est pourquoi depuis quelques annĂ©es de nombreuses solutions ont Ă©tĂ© mises au point afin de linĂ©ariser un amplificateur fonctionnant Ă  rendement Ă©levĂ©. Le but de cette Ă©tude est de mettre au point un systĂšme complet de linĂ©arisation d'amplificateur de puissance destinĂ© Ă  une application radio-mobile. La technique proposĂ©e est originale et basĂ©e sur la prĂ©distorsion adaptative en bande de base. L'amplificateur est reprĂ©sentĂ© par le modĂšle de Hammerstein et la technique proposĂ©e se base sur ce modĂšle. Les rĂ©sultats obtenus en simulation montrent la capacitĂ© de cette mĂ©thode Ă  linĂ©ariser des amplificateurs de puissance. Les rĂ©sultats expĂ©rimentaux confirment la faisabilitĂ© et l'apport de cette nouvelle technique.In order to have a good autonomy with the mobile, it is necessary to use a high-efficiency power amplifier. Furthermore, the amplifier must be linear to respect the spectral constraints imposed by the telecommunications norms. That is why since several years, techniques to linearize a high efficient power amplifier have been proposed. The purpose of this study is to design a complete power amplifier linearization system destinated to radio-mobile application. This linearization technique is based on adaptive baseband predistortion. The amplifier is represented by Hammerstein model and the proposed adaptive predistortion technique is based on this model. Simulation results show the capacity of the method to linearize power amplifiers. Experimental results confirm the feasibility and the advantages of this new method.NANTES-BU Sciences (441092104) / SudocSudocFranceF

    Applications of the Random Coupling Model for stacked printed circuit boards

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    International audienceResonant phenomena in computer or server casings have not been studied yet from the information security point of view. Couplings that can occur in reverberant environment may have an impact on confidentiality, integrity and availability of information. Therefore, it is of high interest to have tools able to quantify these coupling. Because of the diversity of shapes and geometries of casings, a statistical approach should be considered. It will lead to the assessment of the probability that a current, or a voltage, reaches a given magnitude. This quantity may be a relevant input for a risk analysis process. We will highlight that a statistical model, namely the Random Coupling Model (RCM), may be applied to determine statistical quantities related to induced currents at several ports inside an equipement chassis

    Applications of the Random Coupling Model to Assess Induced Currents or Voltages in Reverberant Environment

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    International audienceCoupling in electronic devices may be a threat for the security of the information they process. Indeed, a current flowing into a conductor may radiate an electromagnetic field that will couple onto other conductors creating parasitic signals. If this current conveys sensitive information, its confidentiality may not be guaranteed. Moreover, depending on the amplitude of these parasitic signals, dysfunction may occur. It is thus valuable to assess the coupling effects in order to evaluate the probability that a current or a voltage reaches a given magnitude. This relevant quantity may be an input for a risk analysis process. In this study, we will focus on the study of couplings in reverberant cavities, and especially into the chassis of desktop computers. We will highlight that the Random Coupling Model (RCM) may be applied to determine statistical quantities related to induced currents or voltages between several ports placed inside a reverberant environment. Comparisons with experimental data, for several system configurations, show that the application of this model is relevant and allows to rapidly obtain the percentiles of the induced currents. At first, the coupling between two monopoles is studied, and then the coupling between printed circuit boards that are stacked together is investigated. Finally, the effect of adding broadband absorbers in casings is assessed
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