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Titlebook: Linear and Nonlinear Control of Small-Scale Unmanned Helicopters; Ioannis A. Raptis,Kimon P. Valavanis Book 2011 Springer Science+Business

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Ioannis A. Raptis,Kimon P. Valavanisvent systems is relevant: control, communications, computer engineering, computer science, manufacturing engineering, operations research, and industrial engineering. .978-1-4419-4119-0978-0-387-68612-7
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Ioannis A. Raptis,Kimon P. Valavanisvent systems is relevant: control, communications, computer engineering, computer science, manufacturing engineering, operations research, and industrial engineering. .978-1-4419-4119-0978-0-387-68612-7
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Ioannis A. Raptis,Kimon P. Valavanisvent systems is relevant: control, communications, computer engineering, computer science, manufacturing engineering, operations research, and industrial engineering. .978-1-4419-4119-0978-0-387-68612-7
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vent systems is relevant: control, communications, computer engineering, computer science, manufacturing engineering, operations research, and industrial engineering. .978-1-4419-4119-0978-0-387-68612-7
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978-94-007-3369-5Springer Science+Business Media B.V. 2011
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Linear and Nonlinear Control of Small-Scale Unmanned Helicopters978-94-007-0023-9Series ISSN 2213-8986 Series E-ISSN 2213-8994
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Introduction,This Chapter presents the rationale for the book, defines the problem to be solved along with the challenges that need to be overcome, and concludes with a summary of the linear and nonlinear controller methodologies that will be detailed in subsequent Chapters.
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Nonlinear Tracking Controller Design for Unmanned Helicopters,The previous Chapter presented a tracking controller of the position and heading of a helicopter based on the linearized helicopter dynamics. The adopted parametric linear model, on which the flight controller is based on, represented the quasi steady state behavior of the helicopter dynamics at hover.
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