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Optimal Impulsive Collision Avoidance in Low Earth Orbit

机译:低地球轨道的最优冲撞避免

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This paper presents a high-accuracy fully analytical formulation to compute the miss distance and collision probability of two approaching objects following an impulsive collision avoidance maneuver. The formulation hinges on a linear relation between the applied impulse and the objects' relative motion in the b-plane, which allows one to formulate the maneuver optimization problem as an eigenvalue problem coupled to a simple nonlinear algebraic equation. The optimization criterion consists of minimizing the maneuver cost in terms of delta-Ⅴ magnitude to either maximize collision miss distance or to minimize Gaussian collision probability. The algorithm, whose accuracy is verified in representative mission scenarios, can be employed for collision avoidance maneuver planning with reduced computational cost when compared with fully numerical algorithms.
机译:本文提出了一种高精度的完全解析公式,用于计算冲撞避免回避动作后两个接近物体的未命中距离和碰撞概率。该公式取决于施加的脉冲与对象在b平面中的相对运动之间的线性关系,这使人们可以将机动优化问题公式化为与简单非线性代数方程耦合的特征值问题。优化标准包括以δ-Ⅴ大小最小化操纵成本,以最大化碰撞未命中距离或最小化高斯碰撞概率。与全数值算法相比,该算法的准确性已在代表性任务场景中得到验证,可用于避免碰撞的机动计划,并降低计算成本。

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