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Robust Stability Evaluation of the Space Launch System Control Design: A Singular Value Approach

机译:航天发射系统控制设计的鲁棒稳定性评估:奇异值方法

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Classical stability analysis consists of breaking the feedback loops one at a time and determining separately how much gain or phase variations would destabilize the stable nominal feedback system. For typical launch vehicle control design, classical control techniques are generally employed. In addition to stability margins, frequency domain Monte Carlo methods are used to evaluate the robustness of the design. However, such techniques were developed for Single-Input-Single-Output (SISO) systems and do not take into consideration the off-diagonal terms in the transfer function matrix of Multi-Input-Multi-Output (MIMO) systems. Robust stability analysis techniques such as H_∞ and u are applicable to MIMO systems, but have not been adopted as standard practices within the launch vehicle controls community. This paper takes advantage of a simple singular-value-based MIMO stability margin evaluation method based on work done by Mukhopadhyay and Newsom and applied it to the SLS high-fidelity dynamics model. The method computes a simultaneous multi-loop gain and phase margin that could be related back to classical margins. The results presented in this paper suggest that for the SLS system, traditional SISO stability margins are similar to the MIMO margins. This additional level of verification provides confidence in the robustness of the control design. Note to readers: the axes labels were taken off some figures to meet International Traffic in Arms Regulations (ITAR) requirements.
机译:经典的稳定性分析包括一次断开一个反馈回路,并分别确定多少增益或相位变化会使稳定的标称反馈系统不稳定。对于典型的运载火箭控制设计,通常采用经典的控制技术。除稳定性裕度外,频域蒙特卡罗方法还用于评估设计的鲁棒性。但是,这种技术是为单输入单输出(SISO)系统开发的,并未考虑多输入多输出(MIMO)系统的传递函数矩阵中的非对角项。诸如H_∞和u的鲁棒稳定性分析技术适用于MIMO系统,但尚未在运载火箭控制社区内用作标准实践。本文利用基于Mukhopadhyay和Newsom所做工作的基于奇异值的简单MIMO稳定性余量评估方法,并将其应用于SLS高保真动力学模型。该方法计算同时多回路增益和相位裕度,这些增益和相位裕度可能与经典裕度有关。本文提出的结果表明,对于SLS系统,传统的SISO稳定裕度类似于MIMO裕度。验证的附加级别使您对控件设计的鲁棒性充满信心。读者注意:轴的标签已去除一些数字,以满足《国际武器贸易条例》(ITAR)的要求。

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