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Computational Guidance Using Sparse Gauss-Hermite Quadrature Differential Dynamic Programming

机译:稀疏高斯-赫姆特正交微分动态规划的计算制导

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This paper proposes a new computational guidance algorithm using differential dynamic programming and sparse Gauss-Hermite quadrature rule. By the application of sparse Gauss-Hermite quadrature rule, numerical differentiation in the calculation of Hessian matrices and gradients in differential dynamic programming is avoided. Based on the new differential dynamic programming approach developed, a three-dimensional computational algorithm is proposed to control the impact angle and impact time for an air-to-surface interceptor. Extensive numerical simulations are performed to show the effectiveness of the proposed approach.
机译:提出了一种基于差分动态规划和稀疏Gauss-Hermite正交规则的计算指导算法。通过应用稀疏的高斯-赫尔姆特正交规则,避免了差分动态规划中黑森州矩阵和梯度计算中的数值微分。基于新开发的差分动态规划方法,提出了一种三维计算算法来控制空地拦截器的撞击角度和撞击时间。进行了广泛的数值模拟,以显示该方法的有效性。

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