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Design of Optimal Guidance Laws with Multi-Constraints Considering Time-Varying Parameters

机译:考虑时变参数的多约束最优制导律设计

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摘要

This paper presents a design method for optimal guidance laws(OGLs)with multi-constraints when time-varying parameters are present in kinematic equations. This method uses cross-iteration to obtain time-varying parameter values and the piecewise function technology to solve the two-point boundary value problem. The proposed OGL can optimize the combination of landing angle, miss distance and control energy consumption. Ballistic simulations are conducted, and the landing angle using the OGL is twice more than using the proportional navigation law. The strike accuracy and damage effects increase because of the steep terminal trajectory. The time-varying parameters have no limit and require no simplification. Therefore, the proposed design method has a wide range of applications.
机译:针对运动方程中存在时变参数的情况,提出了一种具有多约束的最优制导律的设计方法。该方法利用交叉迭代获得时变参数值,采用分段函数技术解决两点边值问题。提出的OGL可以优化着陆角,空投距离和控制能耗的组合。进行了弹道仿真,使用OGL的着陆角是使用比例导航定律的两倍。陡峭的航迹轨迹提高了打击精度和破坏效果。随时间变化的参数没有限制,也不需要简化。因此,提出的设计方法具有广泛的应用范围。

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