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Monte Carlo Analysis as a Trajectory Design Driver for the TESS Mission

机译:蒙特卡洛分析作为TESS任务的轨迹设计驱动力

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The Transiting Exoplanet Survey Satellite (TESS) will be injected into a highly eccentric Earth orbit and fly 3.5 phasing loops followed by a lunar flyby to enter a mission orbit with lunar 2:1 resonance. Through the phasing loops and mission orbit, the trajectory is significantly affected by lunar and solar gravity. We have developed a trajectory design to achieve the mission orbit and meet mission constraints, including eclipse avoidance and a 30-year geostationary orbit avoidance requirement. A parallelized Monte Carlo simulation was performed to validate the trajectory after injecting common perturbations, including launch dispersions, orbit determination errors, and maneuver execution errors. The Monte Carlo analysis helped identify mission risks and is used in the trajectory selection process.
机译:过渡系外行星勘测卫星(TESS)将被注入一个高度偏心的地球轨道,并飞行3.5个相位环,然后进行月球飞越,进入具有月球2:1共振的任务轨道。通过定相环和任务轨道,轨道受到月球和太阳重力的显着影响。我们已经开发了一种轨迹设计,以实现任务轨道并满足任务约束,包括避免日食和避免30年对地静止轨道的要求。在注入常见的扰动(包括发射散布,轨道确定误差和操纵执行误差)后,执行了并行的蒙特卡洛模拟以验证轨迹。蒙特卡洛分析有助于确定任务风险,并用于轨迹选择过程。

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