航空航天和国防
设计、仿真、测试、部署和可视化安全及任务关键型系统
航空航天和国防领域的工程组织可以使用 MATLAB® 和 Simulink® 来开发、分析、认证和可视化复杂的航空航天系统。MathWorks® 航空航天产品可用于:
对飞行器和航天器进行建模、仿真和可视化。
合并环境模型。
设计制导导航和控制系统。
执行稳定性分析、飞行分析和任务分析。
验证软件工程是否符合行业标准。
适用产品: 航空航天和国防
主题
飞行器和航天器的建模与仿真
- Get Started with Fixed-Wing Aircraft (Aerospace Toolbox)
Create and use a fixed-wing aircraft in MATLAB. - Import from USAF Digital DATCOM Files (Aerospace Toolbox)
Bring United States Air Force (USAF) Digital DATCOM files into the MATLAB environment. - Satellite Constellation Access to Ground Station (Aerospace Toolbox)
Set up access analysis between a ground station and conical sensors onboard a constellation of satellites. - Create Aerospace Models (Aerospace Blockset)
Build models with your Aerospace Blockset™ software. - Model Spacecraft (Aerospace Blockset)
Model, simulate, and visualize the motion and dynamics of spacecraft using spacecraft dynamics, orbit propagator, and CubeSat blocks.
环境模型
- Marine Navigation Using Planetary Ephemerides (Aerospace Toolbox)
Perform celestial navigation of a marine vessel by using the planetary ephemerides. - Visualize World Magnetic Model Contours for 2020 Epoch (Aerospace Toolbox)
Visualize contour plots of calculated values for the Earth magnetic field using World Magnetic Model 2020 (WMM2020). - Gravity Models with Precessing Reference Frame (Aerospace Blockset)
Implement various gravity models with precessing reference frames using Aerospace Blockset blocks.
制导、导航和控制以及稳定性分析
- Flight Control Analysis Tools (Aerospace Toolbox)
Analyze the motion and dynamics of aerospace vehicles with short-period requirements, boundary line, and altitude contour plots. - Analyze State-Space Model for Linear Control and Static Stability Analysis (Aerospace Toolbox)
Convert a fixed-wing aircraft to a linear time invariant (LTI) state-space model for linear analysis. - Analyze Dynamic Response and Flying Qualities of Aerospace Vehicles (Aerospace Blockset)
Analyze dynamic response and flying qualities of aerospace vehicles using flight control analysis tools. - Transition from Low- to High-Fidelity UAV Models in Three Stages (UAV Toolbox)
Evolve your UAV plant model continuously to stay in sync with the latest information available.
飞行分析和任务分析
- Estimate G Forces for Flight Data (Aerospace Toolbox)
Load flight data and estimate G forces during the flight. - Mission Analysis with the Orbit Propagator Block (Aerospace Blockset)
Compute and visualize line-of-sight access intervals between satellites and a ground station. - Analyze UAV Autopilot Flight Log Using Flight Log Analyzer (UAV Toolbox)
Import flight log data, create figures and plots, export signals, and use custom signal mapping in the Flight Log Analyzer app. - UAV Package Delivery (UAV Toolbox)
Implement a small multicopter simulation to takeoff, fly, and land in a city environment. - Simulate Safe Landing of UAV in Unexplored Environment Using Unreal Engine (UAV Toolbox)
Simulate safe landing operation of a UAV in an unexplored environment.
飞行可视化
- Visualization Tools (Aerospace Toolbox)
View vehicle dynamics in 3-D flight paths and trajectories, create Apps with flight instruments, and transform coordinate axes. - Visualization Tools (Aerospace Blockset)
View flight paths with MATLAB graphics-based 3DoF and 6DoF animation blocks, scenarios using Unreal Engine®, or flight simulator animation; input data to models; display measurements through standard cockpit instruments. - Create 3D Simulations in Unreal Engine Environment (Simulink 3D Animation)
Use MATLAB or Simulink to create, view, and interact with 3D simulations and access Unreal Engine features.
系统认证
- Tool Qualification Process Overview (DO Qualification Kit)
Process workflow for qualifying the verification tool.
精选示例
视频
使用 Simulink 进行飞机的建模、仿真和飞行控制设计
使用 MATLAB 和 Simulink 对飞行器设计和自动飞行控制应用基于模型的设计。
使用 MATLAB 和 Simulink 进行自主无人机 (UAV) 开发和评估
使用 MATLAB 和 Simulink 开发和自动化自主无人机。
使用基于模型的设计以符合 DO-178C 和 DO-331 规范
使用基于模型的设计以证明符合 DO-178C 和 DO-331 规范。