Hui-Bo Zhou, Jun-Hong Song and Shen-Min Song. Sliding Mode Guidance Law Considering Missile Dynamic Characteristics and Impact Angle Constraints. International Journal of Automation and Computing, vol. 15, no. 2, pp. 218-227, 2018. DOI: 10.1007/s11633-016-0953-y
Citation: Hui-Bo Zhou, Jun-Hong Song and Shen-Min Song. Sliding Mode Guidance Law Considering Missile Dynamic Characteristics and Impact Angle Constraints. International Journal of Automation and Computing, vol. 15, no. 2, pp. 218-227, 2018. DOI: 10.1007/s11633-016-0953-y

Sliding Mode Guidance Law Considering Missile Dynamic Characteristics and Impact Angle Constraints

  • In order to improve the precision of guidance for the missile intercepting maneuvering targets, this paper proposes a sliding mode guidance law with impact angle constraints based on the equation of the relative motion of the missile and the target in a 2D plane. Two finite-time convergent guidance laws are proposed based on the nonsingular terminal sliding mode, while, two exponential convergent guidance laws involving dynamic delay are developed through applying the higher-order nonsingular terminal sliding mode. The simulations denote that, in all the four scenarios of the target s maneuvering, the guidance laws are able to inhibit the chattering phenomenon of the sliding modes effectively; and from an expected aspect angle, the missiles could attack the targets with high precision and fast speed.
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