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Force and Moment Approach for Achievable Dynamics Using Nonlinear Dynamic Inversion

机译:利用非线性动态反演实现动力学的力和力矩方法

摘要

This paper describes a general form of nonlinear dynamic inversion control for use in a generic nonlinear simulation to evaluate candidate augmented aircraft dynamics. The implementation is specifically tailored to the task of quickly assessing an aircraft's control power requirements and defining the achievable dynamic set. The achievable set is evaluated while undergoing complex mission maneuvers, and perfect tracking will be accomplished when the desired dynamics are achievable. Variables are extracted directly from the simulation model each iteration, so robustness is not an issue. Included in this paper is a description of the implementation of the forces and moments from simulation variables, the calculation of control effectiveness coefficients, methods for implementing different types of aerodynamic and thrust vectoring controls, adjustments for control effector failures, and the allocation approach used. A few examples illustrate the perfect tracking results obtained.
机译:本文介绍了一种非线性动态反演控制的一般形式,可用于通用非线性仿真中以评估候选的增强飞机动力学。该实现专门针对快速评估飞机的控制功率要求并定义可实现的动态集的任务而定制。在进行复杂的任务演习时,将评估可实现的装备,当可实现所需的动力时,将完成完美的跟踪。每次迭代都直接从仿真模型中提取变量,因此稳健性不是问题。本文包括对来自模拟变量的力和力矩的实现,控制有效性系数的计算,实现不同类型的空气动力学和推力矢量控制的方法,控制效应器故障的调整以及使用的分配方法的描述。一些示例说明了获得的完美跟踪结果。

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