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New three-dimensional second-order sliding mode guidance law with impact-angle constraints

机译:带冲击角约束的新三维二阶滑动模式指导法

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摘要

Aiming at the issue of missiles attacking on-ground maneuvering targets in three-dimensional space, a three-dimensional finite-time guidance law with impact-angle constraints is proposed. In order to improve convergence speed and restrain chattering phenomenon, the nonsingular fast terminal three-dimensional second-order sliding mode guidance law with coupling terms is designed based on the theory of nonhomogeneous fast terminal sliding surface and second-order sliding mode control. The system model need not be linearized during the design process, and the singular problem is avoided. A nonhomogeneous disturbance observer is designed to estimate and compensate the total disturbance, which is caused by target maneuvering information and coupling terms of line of sight. And the stability and finite-time convergence of the guidance law are proved strictly and mathematically. Finally, simulation results have verified the effectiveness and superiority of the proposed guidance law.
机译:旨在攻击攻击三维空间地面机动目标的导弹,提出了一种带有冲击角约束的三维有限时间指导法。为了提高收敛速度和抑制抖动现象,基于非均匀快速端子滑动表面和二阶滑动模式控制的理论设计了具有耦合术语的非垂直终端三维二阶滑动模式引导法。在设计过程中,系统模型不需要线性化,避免了奇异问题。非均匀干扰观察者旨在估计和补偿总干扰,这是由目标机动信息和视线耦合术语引起的。严格和数学证明了指导法的稳定性和有限时间融合。最后,仿真结果已经验证了拟议的指导法的有效性和优势。

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