应用模糊系统的寻的制导律

S. Deskovski, Z. Gacovski, G. Dimirovski
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引用次数: 6

摘要

本文从综合过程中得到了适合不同制导控制规律研究、开发和试验的寻的制导防空或地对空导弹的仿真模型。在自动制导导弹的寻的制导系统中,比例导航是最常用的方法,也是基于现代控制理论的改进解和最优制导律。在这些规律的综合中,采用了在一定假设条件下由运动物体(目标和导弹)的一般规律得到的简化和线性化模型。所有的制导和控制系统都是复杂的,通常是非线性的。此外,还需要在不同的射击制度(传入,传出等)中对具有高范围参数变化(加速度,速度和高度)的目标进行中和。为了提供高质量的过程和小的制导误差,我们应用模糊逻辑来获取制导律的一些参数。本文给出了对假想SA导弹不同制导规律的研究结果。我们研究了经典比例导航- pn、增强比例导航- apn以及不同射击条件下的最优制导律。给出了模糊制导律与比例导航相结合的结果。仿真程序用FORTRAN和MATLAB语言实现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Homing guidance laws using applied fuzzy systems
In this paper we present a simulation model of homing-guided anti-aircraft or surface-to air (SA) missiles-SAM, suitable for research, development and testing of different guidance and control laws, obtained from synthesis process. In homing-guidance systems for SA missiles-proportional navigation is most commonly used, and also improved solutions and optimal guidance laws based on modern control theory. In the synthesis of these laws-reduced and linearized models are used, which are obtained from general laws for mobile objects (target and missile) under some assumptions. All systems for guidance and control of SA missiles are complex and typically non-linear. Also there is a need for neutralizing of targets with high range of parameter changes (acceleration, velocity and height), in different shooting regimes (incoming, outgoing etc.). In order to provide quality process and small guidance error-we have applied fuzzy logic to obtain some parameters for the guidance law. In this paper we present results from investigation of different guidance laws for hypothetic SA missile. We have investigated classical proportional navigation-PN, augmented proportional navigation-APN, and optimal guidance laws for different shooting conditions. The results from fuzzy guidance law combined with proportional navigation are also given. Simulation programs are realized in FORTRAN and MATLAB.
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