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A 3D nonlinear guidance law with impact terminal angle constraints

机译:带冲击终端角约束的3D非线性指导法

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Generalized model predictive static programming (G-MPSP) technique is presented in this paper in the continuous time framework for rapidly solving a class of 3D nonlinear optimal control problems with hard terminal constraints. A key feature of the technique is backward propagation of a small-dimensional weight matrix dynamics, using which the control history got updated. It leads to a static optimization problem and it is the reason for its high computational efficiency. Various maneuvering ground targets is considered in the simulation studies. The simulation results show that impact angle constraints are met in addition to achieving near zero miss distance and the variation in the lateral acceleration history is quite smooth throughout the engagement.
机译:在该论文中,在连续时间框架中介绍了广义模型预测静态编程(G-MPSP)技术,用于快速解决硬端子约束的一类3D非线性最佳控制问题的连续时间框架。该技术的一个关键特征是小维权重矩阵动态的向后传播,使用该矩阵动态进行更新的控制历史。它导致静态优化问题,这是其高计算效率的原因。在模拟研究中考虑了各种机动地面目标。仿真结果表明,除了实现接近零错过距离之外,是否满足了冲击角约束,并且在整个接合中横向加速度历史的变化非常平滑。

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