首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >Automatic load relief numerical predictor-corrector guidance for low L/D vehicles return from low Earth orbit
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Automatic load relief numerical predictor-corrector guidance for low L/D vehicles return from low Earth orbit

机译:低L / D车辆从低地球轨道返回的自动减负数值预测器-校正器引导

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摘要

The poor maneuverability of low lift-to-drag ratio (L/D) vehicles results in low precision of reference-trajectory guidance and difficulty in meeting load constraints. This paper presents an automatic load relief numerical predictor-corrector method for the guidance of low L/D vehicles return from low Erath orbit. By elaborately designing a bank-angle profile in each guidance circle and selecting appropriate iteration parameters, the goal of automatic load relief is achieved, which greatly reduces the maximum peak load. With the use of coupled guidance and landing error feedback algorithms, the guidance precision is improved. Aerodynamic coefficients of the vehicle and landing errors are filtered to further increase the robustness of the algorithm. Extensive Monte Carlo simulations are conducted to evaluate and verify the design features of the algorithm. The test results show that the algorithm consistently offers very satisfactory performance even in highly dispersed cases. Such an algorithm holds distinct potential for onboard applications.
机译:低升阻比(L / D)车辆的机动性差,导致参考轨迹制导的精度低,难以满足载荷限制。本文提出了一种自动减负数值预测器-校正器方法,用于指导低E / D车辆从低Erath轨道返回。通过精心设计每个引导圈中的倾斜角轮廓并选择适当的迭代参数,可以达到自动减轻载荷的目的,从而大大降低了最大峰值载荷。通过使用结合的制导和着陆误差反馈算法,制导精度得以提高。过滤车辆的空气动力学系数和着陆误差,以进一步提高算法的鲁棒性。进行了广泛的蒙特卡洛仿真,以评估和验证算法的设计特征。测试结果表明,即使在高度分散的情况下,该算法也始终提供非常令人满意的性能。这种算法在车载应用中具有独特的潜力。

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