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On-board generation of three-dimensional constrained entry trajectories

机译:板载生成三维约束进入轨迹

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A methodology for very fast design of three degree-of-freedom (3DOF) entry trajectories subject to all common inequality and equality constraints is developed. The approach makes novel use of the well-known quasi-equilibrium glide phenomenon in lifting entry as a center piece for effective and efficient enforcement of the inequality constraints. The highly constrained nonlinear trajectory planning problem is decomposed into two sequential one-parameter search problems. The algorithm is able to generate a complete and feasible 3DOF entry trajectory in about 2 to 3 seconds on a desktop computer, given the entry conditions, values of constraint parameters, and final conditions. High fidelity numerical simulations with a reusable launch vehicle model for various entry missions are presented to demonstrate the capability and effectiveness of the algorithm.
机译:开发了一种符合所有常见不等式和平等约束的三维自由度(3DOF)进入轨迹的非常快速设计的方法。该方法使得新颖的使用众所周知的准平衡滑动现象在提升进入中作为中心件,以实现不等式限制的有效和有效的执行。高度约束的非线性轨迹规划问题被分解为两个连续的一个参数搜索问题。算法能够在桌面计算机上在约2到3秒内在桌面计算机上生成完整和可行的3DOF条目轨迹,给定条目条件,约束参数和最终条件。提出了具有可重用的发射车辆模型的高保真数值模拟,用于各种入口任务,以证明算法的能力和有效性。

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