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High-Efficiency Thrust Vector Control Allocation

机译:高效推力矢量控制分配

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摘要

A generalized approach to the allocation of redundant thrust vector slew commands for multi-actuated launch vehicles is presented, where deflection constraints are expressed as omniaxial or elliptical deflection limits in gimbal axes. More importantly than in the aircraft control allocation problem, linear allocators (pseudoinverses) are preferred for large booster applications to facilitate accurate prediction of the control-structure interaction resulting from thrust vectoring effects. However, strictly linear transformations for the allocation of redundant controls cannot, in general, access all of the attainable moments for which there is a set of control effector positions that satisfies the constraints. In this paper, the control allocation efficiency of a certain class of linear allocators subject to multiple quadratic constraints is analyzed, and a novel single-pass control allocation scheme is proposed that augments the pseudoinverse near the boundary of the attainable set The controls are determined over a substantial volume of the attainable set using only a linear transformation; as such, the algorithm maintains compatibility with frequency-domain approaches to the analysis of the vehicle closed-loop elastic stability. Numerical results using a model of a winged reusable booster system illustrate the proposed technique's ability to access a larger fraction of the attainable set than a pseudoinverse alone.
机译:提出了一种通用的方法来分配多推力运载工具的冗余推力矢量摆率命令,其中偏转约束表示为万向轴上的全轴或椭圆偏转极限。比在飞机控制分配问题中更重要的是,对于大型助推器应用,线性分配器(伪逆)是首选,以便于对推力矢量效应产生的控制结构相互作用进行准确预测。但是,通常,用于冗余控件分配的严格线性变换无法访问存在一组满足约束条件的控件执行器位置的所有可达到的力矩。本文分析了受多个二次约束约束的一类线性分配器的控制分配效率,并提出了一种新的单遍控制分配方案,该方案增加了可到达集合边界附近的伪逆。仅使用线性变换即可获得的大量数据;这样,该算法保持了与频域方法的兼容性,以分析车辆的闭环弹性稳定性。使用有翼可重复使用的助推器系统模型的数值结果说明,与仅使用拟逆算法相比,所提出的技术能够访问可获取集合的更大部分。

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  • 来源
    《Journal of guidance, control, and dynamics》 |2014年第2期|374-382|共9页
  • 作者

    Jeb S. Orr; Nathan J. Slegers;

  • 作者单位

    The Charles Stark Draper Laboratory, Inc., Huntsville, Alabama 35812;

    University of Alabama in Huntsville, Huntsville, Alabama 35816,Department of Aerospace Engineering;

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  • 正文语种 eng
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