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Robust control of a launch vehicle in atmospheric ascent based on guardian maps

机译:基于Guardian Maps的大气上升中的发动机鲁棒控制

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A robust control design for a space launcher during its atmospheric ascent is presented. Considering a typical wind profile during flight, the launcher controller has to first stabilize the open-loop unstable system, and then maintain verticality. The model available takes into account flexible modes and nozzle actuator dynamics, and is time-variant. Aside from launcher stability, additional requirements pertaining to frequency and damping of rigid launcher modes as well as flexible ones, must be fulfilled. The synthesis relies on guardian maps, making possible to characterize the sets of all controller gains which meet the requirements, by specifying areas of interest where the system's closed-loop poles must be located.
机译:提出了在其大气上升期间的空间发射器的强大控制设计。考虑到飞行期间的典型风剖面,发射器控制器必须先稳定开环不稳定系统,然后保持垂直度。可用的型号考虑了灵活的模式和喷嘴执行器动力学,并且是时变的。除了发射器稳定性,必须满足与刚性发射器模式的频率和阻尼有关的额外要求以及灵活的要求。该合成依赖于监护地图,使得可以通过指定必须找到系统的闭环磁极的感兴趣区域来表征满足要求的所有控制器增益集。

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