Automated Process for Unmanned Aerial Systems Controller Implementation Using MATLAB

D. Ernst, K. Valavanis, J. Craighead
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引用次数: 5

Abstract

A method is presented that attempts to optimize, standardize, and automate the process of unmanned vehicle controller design, evaluation, validation and verification, followed by actual hardware controller implementation on the vehicle. The proposed approach follows the standard practice to utilize MATLAB/SIMULINK and related toolboxes as the design framework. Controller design in MATLAB/SIMULINK is followed by automatic conversion from MATLAB to code generation and optimization for particular types of processors using real-time workshop, and C to assembly language conversion to produce assembly code for a target microcontroller. X-Plane is used to verify, validate and optimize controllers before actual testing on an unmanned vehicle and actual implementation on a chip and printed circuit board. Sample designs demonstrate the applicability of the proposed method
无人机系统控制器自动化过程的MATLAB实现
提出了一种尝试优化、标准化和自动化无人驾驶车辆控制器设计、评估、验证和验证过程的方法,然后在车辆上实际实现硬件控制器。该方法遵循标准实践,使用MATLAB/SIMULINK和相关工具箱作为设计框架。在MATLAB/SIMULINK中进行控制器设计,然后使用实时车间从MATLAB自动转换为特定类型处理器的代码生成和优化,然后使用C语言转换为汇编语言生成目标微控制器的汇编代码。X-Plane用于在无人驾驶车辆上进行实际测试以及在芯片和印刷电路板上实际实现之前验证,验证和优化控制器。实例设计验证了该方法的适用性
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