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Optimal Guidance Law Based on Virtual Sliding Target

机译:基于虚拟滑动目标的最优制导律

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In this paper, a new guidance law, which is called virtual sliding target (VST) guidance law, is designed based on the concept of the virtual target (VT). The presented law is applicable for short- and medium-range missiles. It is shown that by using proportional navigation (PN) and considering the aerodynamic characteristics of the missiles, this law leads to a better performance than the PN law. In this approach, motion of the VT is started from a position higher than the real target. By controlling the speed of VT, which slides toward a predicted intercept point (PIP), speed, position, and trajectory of the missile can be controlled. Since arrival times of the missile to the VT and the VT to the real target are equal, the collision will happen. Furthermore, a new optimal guidance law is presented for long-range missiles based on the concept of the waypoint (WP) and VT. In the mentioned law, there are two important points. The first one is a constant point that is called a waypoint and the second one is called a virtual target, which slides toward the PIP. Then a teaching-learning-based optimization (TLBO) algorithm is used to find the optimal initial position of the WP and the VT to maximize the intercept speed. Simulation results illustrate better performance of the VST law over the PN law in terms of the intercept speed. (C) 2016 American Society of Civil Engineers.
机译:本文基于虚拟目标(VT)的概念,设计了一种新的制导律,称为虚拟滑动目标(VST)制导律。现行法律适用于中短程导弹。结果表明,通过使用比例导航(PN)并考虑导弹的空气动力学特性,该定律比PN定律具有更好的性能。在这种方法中,VT的运动从高于实际目标的位置开始。通过控制向着预定拦截点(PIP)滑动的VT的速度,可以控制导弹的速度,位置和弹道。由于导弹到达VT的时间与到达真实目标的VT的时间相等,因此会发生碰撞。此外,基于航路点(WP)和VT的概念,提出了一种新的远程导弹最优制导律。在上述法律中,有两个要点。第一个是恒定点,称为航路点,第二个是虚拟目标,向PIP滑动。然后使用基于教学的优化(TLBO)算法来找到WP和VT的最佳初始位置,以使拦截速度最大化。仿真结果表明,在拦截速度方面,VST律优于PN律。 (C)2016年美国土木工程师学会。

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