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Fuzzy sliding mode control guidance law with terminal impact angle and acceleration constraints 被引量:6

Fuzzy sliding mode control guidance law with terminal impact angle and acceleration constraints
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摘要 In this paper, a novel fuzzy sliding mode control(FSMC) guidance law with terminal constraints of miss distance, impact angle and acceleration is presented for a constant speed missile against the stationary or slowly moving target. The proposed guidance law combines the sliding mode control algorithm with a fuzzy logic control scheme for the lag-free system and the first-order lag system. Through using Lyapunov stability theory, we prove the sliding surface converges to zero in finite time. Furthermore, considering the uncertain information and system disturbances, the guidance gains are on-line optimized by fuzzy logic technique. Numerical simulations are performed to demonstrate the performance of the FSMC guidance law and the results illustrate the validity and effectiveness of the proposed guidance law. In this paper, a novel fuzzy sliding mode control(FSMC) guidance law with terminal constraints of miss distance, impact angle and acceleration is presented for a constant speed missile against the stationary or slowly moving target. The proposed guidance law combines the sliding mode control algorithm with a fuzzy logic control scheme for the lag-free system and the first-order lag system. Through using Lyapunov stability theory, we prove the sliding surface converges to zero in finite time. Furthermore, considering the uncertain information and system disturbances, the guidance gains are on-line optimized by fuzzy logic technique. Numerical simulations are performed to demonstrate the performance of the FSMC guidance law and the results illustrate the validity and effectiveness of the proposed guidance law.
出处 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2016年第3期664-679,共16页 系统工程与电子技术(英文版)
基金 supported by the National Natural Science Foundation of China(61304224 61305018 61472423) the National Advanced Research Project of China(51301010206)
关键词 guidance law sliding mode control fuzzy logic impact angle guidance law sliding mode control fuzzy logic impact angle
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