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Multi-Body Modeling and Simulation for the Mars PhoenixLander Entry, Descent and Landing

机译:MARS凤凰城的多体建模与仿真,下降和降落

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A multi-body flight simulation for the Phoenix Mars Lander has been developed that includes high fidelity six degree-of-freedom rigid-body models for the parachute and lander system. The simulation provides attitude and rate history predictions of all bodies throughout the flight, as well as loads on each of the connecting lines. In so doing, a realistic behavior of the descending parachute/lander system dynamics can be simulated that allows assessment of the Phoenix descent performance and identification of potential sensitivities for landing. This simulation provides a complete end-to-end capability of modeling the entire entry, descent, and landing sequence for the mission. Time histories of the parachute and lander aerodynamic angles are presented. The response of the lander system to various wind models and wind shears is shown to be acceptable. Monte Carlo simulation results are also presented.
机译:已经开发出了凤凰火星着陆器的多机身飞行模拟,包括降落伞和着陆系统的高保真六自由度刚体模型。该模拟提供了整个飞行中所有机构的态度和速率历史预测,以及每个连接线上的负载。在这样做中,可以模拟降降降落伞/着陆系统动态的现实行为,允许评估凤凰血症性能和识别着陆的潜在敏感性。该仿真提供了建模任务的整个入口,下降和着陆顺序的完整端到端能力。提出了降落伞和着陆器空气动力学角度的时间历史。陆地系统对各种风模型和风剪的响应被认为是可以接受的。还提供了蒙特卡罗模拟结果。

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