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首页> 外文期刊>International Journal of Control, Automation, and Systems >Design of Midcourse Guidance Laws via a Combination of Fuzzy and SMC Approaches
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Design of Midcourse Guidance Laws via a Combination of Fuzzy and SMC Approaches

机译:模糊与SMC相结合的中途制导律设计

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摘要

Issues regarding the design of midcourse guidance laws for antimissiles are addressed. The antimissile is expected to be guided to a place with a desired direction, where a ballistic missile is predicted to pass in the reverse direction, so that the target can be easily found and locked for terminal interception. The predicted location and direction of a ballistic missile may vary with time, due to information update using a trajectory prediction algorithm. To fulfill the guidance performance, the guidance laws are designed by combining the Takagi-Sugeno (T-S) fuzzy approach and the Sliding Mode Control (SMC) technique. Under the designed guidance law, it is shown that the antimissile is able to be efficiently guided to a specified location and direction, even when the existence of uncertainties and disturbances.
机译:解决了与反导中途制导律的设计有关的问题。预计该反导将被引导至具有期望方向的位置,在该位置预计弹道导弹将沿相反方向通过,以便可以轻松找到目标并锁定目标以进行最终拦截。由于使用轨迹预测算法进行信息更新,弹道导弹的预测位置和方向可能会随时间变化。为了满足制导性能,通过结合Takagi-Sugeno(T-S)模糊方法和滑模控制(SMC)技术来设计制导律。根据设计的制导律,表明即使在存在不确定性和干扰的情况下,反导弹也能够有效地被导引至指定的位置和方向。

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