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Optimal controller based servo system design for the thrust vector control of liquid propellant engine of three stage launch vehicle

机译:基于最优控制器的三级运载火箭液体推进器推力矢量控制伺服系统设计

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Thrust Vector Control (TVC) Actuation System gimbals the rocket nozzle that provides precise steering for the launch vehicle. A small rotation of the gimbal is sufficient for generating a significant amount of force or thrust at the gimbal point. The force generated via TVC actuation system stabilizes and steers the vehicle in the required direction to overcome the wind-gust disturbances and balance the aerodynamic movements. The State space model of the linear actuator is considered for the servo system design. The Linear Quadratic Regulator (LQR) is an optimal method in modern control theory that uses state-space technique to analyze or scrutinize the servo systems. The system can be stabilized, using full state feedback under the assumption that all state variables are measurable and are available for feedback. This technique nearly eliminates the trial and error complexity of conventional compensator based design methodology for the TVC actuation systems.
机译:推力矢量控制(TVC)致动系统平衡了火箭喷嘴,该喷嘴可为运载火箭提供精确的转向。万向架的小旋转足以在万向架点产生大量的力或推力。通过TVC致动系统产生的力使车辆稳定并转向所需的方向,以克服阵风干扰并平衡空气动力学运动。在伺服系统设计中考虑了线性执行器的状态空间模型。线性二次调节器(LQR)是现代控制理论中的一种最佳方法,该方法使用状态空间技术来分析或检查伺服系统。假设所有状态变量都是可测量的并且可用于反馈,则可以使用全状态反馈来稳定系统。该技术几乎消除了传统的基于补偿器的TVC致动系统设计方法的反复试验错误。

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