机动目标与非机动目标制导规律分析

M. Ilyas, A. Razzaq, S.S. Hussain
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引用次数: 0

摘要

制导律的选择是影响地空导弹战术性能的重要因素。为了选择合适的制导律,提出了一种比较法向有效加速度与要求加速度或要求加速度的方法。利用该方法对比例导航制导律(PNC)和增广比例导航制导律(APNC)两种制导律进行了测试。通过法向有效加速度和需求加速度的比较,对这些制导规律进行了研究。为了模拟机动目标和非机动目标的弹靶交战,建立了数学模型,并在SIMULINK/MATLAB中进行了仿真,对PNG和APNG对机动目标和非机动目标进行了广泛的仿真分析。通过仿真结果可以看出,PNG算法适用于非机动目标,而不适用于机动目标。然而,APNG对机动目标和非机动目标都是最优制导律。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of Guidance Laws for Manouvering and Non-Manouvering Targets
Selection of guidance law is an important factor that affects the tactical performance of surface to air missiles. In order to select a suitable guidance law, a method of comparing the normal available acceleration with demanded or required acceleration is formulated. Two guidance laws i.e., proportional navigation guidance law (PNC) and augmented proportional navigation guidance law (APNC) are tested by this method. These guidance laws are studied by the comparison of normal available acceleration and demanded acceleration. In order to simulate the missile-target engagements for maneuvering and non maneuvering targets, a mathematical model is formed and then it is simulated in SIMULINK/MATLAB to carry out extensive simulations to analyze the PNG and APNG against maneuvering and non maneuvering targets. By observing the simulation results, it can be seen that PNG is suitable for non-maneuvering targets and it is incapable for maneuvering targets. However, the APNG is an optimal guidance law for maneuvering and non-maneuvering targets both.
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