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A new three-dimensional guidance law based on reduced-order extended state observer for highly maneuvering targets

机译:基于减少延长状态观察者的高机动目标的新三维指导法

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This paper proposes a new three-dimensional guidance law in order to achieve high-precision interception against the highly maneuvering targets in terminal guidance phase. Firstly, a reduced-order extended state observer is proposed to estimate the line-of-sight angle rate and the total disturbances composed of internal nonlinear dynamics and external disturbances. Secondly, a three-dimensional guidance law based on the reduced-order extended state observer is designed to actively compensate for the total disturbances and guarantee high-precision interception. The convergence and stability of the closed-loop interception system are analyzed rigorously. Different from the existing extended state observer based method, this paper only uses the line-of-sight angle as the output signal in the guidance law design. At the same time, the upper bounds of the system states are carefully analyzed to avoid the singularity of the closed-loop interception systems, which is not considered in existing results. Simulation results illustrate the effectiveness of the proposed method.
机译:本文提出了一种新的三维指导法,以实现对终端指导阶段高度机动目标的高精度拦截。首先,提出了一种阶阶扩展状态观察者来估计视线角率和由内部非线性动力学和外部干扰组成的总干扰。其次,基于减少阶延长状态观察者的三维指导法旨在主动补偿总干扰并保证高精度拦截。严格分析闭环拦截系统的收敛性和稳定性。与现有的扩展状态观察者的方法不同,本文仅使用视线角度作为引导法设计中的输出信号。同时,仔细分析系统状态的上限以避免闭环拦截系统的奇异性,这在现有结果中不考虑。仿真结果说明了该方法的有效性。

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