Fractional Calculus for Scientists and Engineers [electronic resource] / by Manuel Duarte Ortigueira.

Por: Ortigueira, Manuel Duarte [author.]Colaborador(es): SpringerLink (Online service)Tipo de material: TextoTextoSeries Lecture Notes in Electrical Engineering; -84Descripción: XIV, 154 p. online resourceISBN: 9789400707474 99789400707474Tema(s): Engineering | Engineering | APPL.MATHEMATICS./ COMPUTATIONAL METHODS OF ENGINNEERING | ENGINEERING MATHEMATICS | SIGNAL, IMAGE AND SPEECH PROCESSING | MANAGEMENT OF COMPUTING AND INFORMATION SYSTEMS | COMPUTER SCIENCEClasificación CDD: 519 Recursos en línea: ir a documento
Contenidos:
1. Fractional Derivative -- 2. Integral representations -- 3. Fractional Linear Systems -- 4. Two sided fractional derivatives -- 5. The quantum fractional derivative and the scale invariant linear systems -- 6. Where do we go?.
Resumen: In recent years fractional calculus has been rediscovered by scientists and engineers and applied in an increasing number of fields, such as electromagnetism, control engineering, and signal processing. The increase in the number of physical and engineering processes that are best described by fractional differential equations has motivated its study. This book gives a practical overview of Fractional Calculus as it relates to Signal Processing. It is designed to be accessible by Scientists and Engineers mainly interested in applications, who do not want to spend too much time and effort to access to the main Fractional Calculus features and tools. Readers can benefit from the attempt to present a Fractional Calculus foundation based of the Grínwald-Letnikov derivative, because it exhibits great coherence allowing deduction from it the other derivatives, which appear as a consequence of the Grínwald-Letnikov derivative properties and not as a prescription.
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1. Fractional Derivative -- 2. Integral representations -- 3. Fractional Linear Systems -- 4. Two sided fractional derivatives -- 5. The quantum fractional derivative and the scale invariant linear systems -- 6. Where do we go?.

In recent years fractional calculus has been rediscovered by scientists and engineers and applied in an increasing number of fields, such as electromagnetism, control engineering, and signal processing. The increase in the number of physical and engineering processes that are best described by fractional differential equations has motivated its study. This book gives a practical overview of Fractional Calculus as it relates to Signal Processing. It is designed to be accessible by Scientists and Engineers mainly interested in applications, who do not want to spend too much time and effort to access to the main Fractional Calculus features and tools. Readers can benefit from the attempt to present a Fractional Calculus foundation based of the Grínwald-Letnikov derivative, because it exhibits great coherence allowing deduction from it the other derivatives, which appear as a consequence of the Grínwald-Letnikov derivative properties and not as a prescription.

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