Description

Based on a structured approach to diversity, notably inspired by various forms of diversity of natural origins, Diversity and Non-integer Derivation Applied to System Dynamics provides a study framework to the introduction of the non-integer derivative as a modeling tool. Modeling tools that highlight unsuspected dynamical performances (notably damping performances) in an "integer" approach of mechanics and automation are also included. Written to enable a two-tier reading, this is an essential resource for scientists, researchers, and industrial engineers interested in this subject area.

Table of Contents:

1. From Diversity to Unexpected Dynamic
Performance.
2. The Robustness of Damping.
3. Fractional Differentiation and its Memory.
4. CRONE Suspension Idea.
5. CRONE Control Idea

Diversity and Non-integer Differentiation for System Dynamics

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£142.95

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Hardback by Alain Oustaloup

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Short Description:

Based on a structured approach to diversity, notably inspired by various forms of diversity of natural origins, Diversity and Non-integer... Read more

    Publisher: ISTE Ltd and John Wiley & Sons Inc
    Publication Date: 29/07/2014
    ISBN13: 9781848214750, 978-1848214750
    ISBN10: 1848214758

    Number of Pages: 384

    Non Fiction , Technology, Engineering & Agriculture , Education

    Description

    Based on a structured approach to diversity, notably inspired by various forms of diversity of natural origins, Diversity and Non-integer Derivation Applied to System Dynamics provides a study framework to the introduction of the non-integer derivative as a modeling tool. Modeling tools that highlight unsuspected dynamical performances (notably damping performances) in an "integer" approach of mechanics and automation are also included. Written to enable a two-tier reading, this is an essential resource for scientists, researchers, and industrial engineers interested in this subject area.

    Table of Contents:

    1. From Diversity to Unexpected Dynamic
    Performance.
    2. The Robustness of Damping.
    3. Fractional Differentiation and its Memory.
    4. CRONE Suspension Idea.
    5. CRONE Control Idea

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