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Titlebook: Identification Modeling and Characteristics of Miniature Rotorcraft; Bernard Mettler Book 2003 Springer Science+Business Media New York 20

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Bernard Mettlertal-like trace element and radiogenic isotope signatures, resembling closely some upper crustal rocks such as metapelites. The coexistence of both crustal and mantle signatures in these magmas reveals an origin from anomalous sources, consisting of a mélange of mantle and crustal rocks. Such a parti
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Bernard Mettlermic Wadati-Benioff zone with depth of earthquake foci increasing northwestward. Aeolian arc magmas were generated in a heterogeneous upper mantle that was metasomatised by various types of fluids released from the Ionian subduction zone and associated sediments. The role of sediment increases signif
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Development of the Identification Model,The goal of our system identification is to achieve the best possible fit of the estimated frequency responses and, ultimately, the vehicle responses, with a model that is physically meaningful and that has an accuracy well suited for high-bandwidth control design applications.
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Characteristics of Small-Scale Rotorcraft,mensions in different ways, scaling down a helicopter will change the relative magnitude of the main forces governing the vehicle dynamics and thus modify its dynamic characteristics. For the pilot, scaling down a helicopter tends to make it more difficult to control; the stabilizer bar is used to compensate for these scaling effects.
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978-1-4419-5311-7Springer Science+Business Media New York 2003
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https://doi.org/10.1007/978-1-4757-3785-1Rotor; control; design; development; model; modeling; optimization; robot; robotics; unmanned aerial vehicle
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