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首页> 外文期刊>Defence Science Journal >3-D Modified Proportional Navigation Guidance Law based on a Total Demand Vector Concept
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3-D Modified Proportional Navigation Guidance Law based on a Total Demand Vector Concept

机译:基于总需求向量概念的3-D修正比例导航制导律

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摘要

Different proportional navigation (PN)-based guidance laws-pure proportional navigation (PPN), true proportional navigation (TPN), and proportional navigation with boost acceleration compensation generally used cannot maintain fundamental parameter of proportional navigation, viz., Navigation constant to the desired value in the presence of significantly high lead angles and missile longitudinal accelerations/decelerations. In a real-life situation with sensor noises and hardware constraints, this navigation constant should be maintained tightly at the selected value, which is generally between 3 and 4, for optimum performance. In this paper; a new 3-D modified PN guidance law based on a total demand vector concept is presented, which can maintain the navigation constant to the designer-selected value for any 3-D engagement scenario with associated lead angles and any velocity profile with missile longitudinal accelerations/ decelerations. Generality of this guidance law is brought out and superiority of this guidance law over the commonly used proportional navigation-based laws like PPN, TPN and PN with boost acceleration compensation has been demonstrated by applying it to the real-life 3-D engagement scenarios of different hypothetical missiles.
机译:通常使用不同的基于比例导航(PN)的制导律-纯比例导航(PPN),真比例导航(TPN)和具有助力加速度补偿的比例导航无法将比例导航的基本参数(即,导航常数)保持在所需的恒定值在存在极大的超前角和导弹纵向加速度/减速度的情况下获得最大价值。在存在传感器噪声和硬件限制的实际情况下,为了获得最佳性能,应将导航常数严格保持在选定值(通常在3到4之间)内。本文提出了一种基于总需求向量概念的新的3-D修改后的PN制导律,对于任何具有相关联的超前角的3-D交战场景以及任何具有导弹纵向加速度的速度分布,该导航定律都可以将导航常数保持为设计者选择的值/减速度。指出了该制导律的一般性,并将该制导律应用于实际的3D交战场景,证明了该制导律优于带有助力加速度补偿的常用比例导航法(如PPN,TPN和PN)的优越性。不同的假想导弹。

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