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User Manual Matlab Aerospace Blockset
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You can read the recommendations in the user guide, the technical guide or the installation guide for MATLAB AEROSPACEBLOCKSET 3. You'll find the answers to all your questions on the MATLAB AEROSPACE BLOCKSET 3 in the user manual(information, specifications, safety advice, size, accessories, etc.). Detailed instructions for use are in the User's Guide.
User manual MATLAB AEROSPACE BLOCKSET 3User guide MATLAB AEROSPACE BLOCKSET 3
Operating instructions MATLAB AEROSPACE BLOCKSET 3Instructions for use MATLAB AEROSPACE BLOCKSET 3Instruction manual MATLAB AEROSPACE BLOCKSET 3
Your user manualMATLAB AEROSPACE BLOCKSET 3
Manual abstract:
1-2 1-2 1-2 1-4 1-4 1-4 1-5 1-5 1-5 1-6 1-7 1-10 1-12 1-17 1-17 1-17 Using the Aerospace Blockset Software 2 Introducing the Aerospace Blockset LibrariesIntroduction Opening the Aerospace Blockset Library . Summary of Aerospace Blockset Libraries . Creating Aerospace Models . 2-2 2-2 2-2 2-4 2-8 v BasicSteps . Model Referencing Limitations Building a Simple Actuator System Building the Model Running the Simulation About Aerospace Coordinate Systems .Fundamental Coordinate System Concepts Coordinate Systems for Modeling Coordinate Systems for Navigation . Coordinate Systems for Display References. Introducing the Flight Simulator Interface About the FlightGear Interface Obtaining FlightGear Configuring Your Computer for FlightGear Installing and
Starting FlightGear . Working with the Flight Simulator Interface . Introduction About Aircraft Geometry Models .Working with Aircraft Geometry Models . Running FlightGear with the Simulink Models . Running the NASA HL-20 Demo with FlightGear . 2-8 2-9 2-102-10 2-14 2-16 2-16 2-18 2-20 2-23 2-24 2-26 2-26 2-26 2-27 2-30 2-32 2-32 2-33 2-35 2-38 2-48 Case Studies 3 Ideal Airspeed Correction Introduction
Airspeed Correction Models . Measuring Airspeed .Modeling Airspeed Correction . Simulating Airspeed Correction 1903 Wright Flyer 3-2 3-2 3-2 3-3 3-5 3-7 3-9 vi Contents Introduction Wright Flyer ModelAirframe Subsystem . Environment Subsystem Pilot Subsystem . Running the Simulation References . NASA HL-20 Lifting Body Airframe Introduction NASA
HL-20 Lifting Body The HL-20 Airframe and Controller Model .References . Missile Guidance System . Introduction Missile Guidance System Model Modeling Airframe Dynamics Modeling a Classical Three-Loop
Autopilot . Modeling the Homing Guidance Loop . Simulating the Missile Guidance System Extending the Model . References . 3-9 3-10 3-10 3-14 3-15 3-163-17 3-19 3-19 3-19 3-20 3-33 3-34 3-34 3-34 3-35 3-42 3-44 3-50 3-52 3-53 Block Reference 4 Actuators . Aerodynamics . Animation MATLAB-Based
Animation . Flight Simulator Interfaces .
Animation Support Utilities . Environment Atmosphere 4-2 4-2 4-2 4-3 4-3 4-3 4-4 4-4 vii Gravity & Magnetism Wind Flight Parameters . Equations ofMotion . Three DoFs Six DoFs . Point Masses . Guidance, Navigation, and Control Control Guidance Navigation . Mass Properties . Propulsion Utilities .
Axes Transformations Math Operations Unit Conversions 4-5 4-5 4-6 4-7 4-7 4-8 4-10 4-10 4-11 4-12 4-12 4-13 4-13 4-13 4-13 4-15 4-16 Blocks --Alphabetical List 5 Aerospace Units A Index viii Contents 1 Getting Started · "Product Overview" on page 1-2 · "Related Products" on page 1-4 · "Running aDemo Model" on page 1-5 · "Learning More" on page 1-17 1 Getting Started Product Overview The Aerospace BlocksetTM product lets you model aerospace
systems in the Simulink® and MATLAB® environments. The Aerospace Blockset product brings the full power of Simulink to aerospace system design,integration, and simulation by providing key aerospace subsystems and components in the adaptable Simulink block format.
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Your user manualMATLAB AEROSPACE BLOCKSET 3
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