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Development of Monte Carlo Capability for Orion Parachute Simulations

机译:开发用于猎户座降落伞模拟的蒙特卡洛功能

摘要

Parachute test programs employ Monte Carlo simulation techniques to plan testing and make critical decisions related to parachute loads, rate-of-descent, or other parameters. This paper describes the development and use of a MATLAB-based Monte Carlo tool for three parachute drop test simulations currently used by NASA. The Decelerator System Simulation (DSS) is a legacy 6 Degree-of-Freedom (DOF) simulation used to predict parachute loads and descent trajectories. The Decelerator System Simulation Application (DSSA) is a 6-DOF simulation that is well suited for modeling aircraft extraction and descent of pallet-like test vehicles. The Drop Test Vehicle Simulation (DTVSim) is a 2-DOF trajectory simulation that is convenient for quick turn-around analysis tasks. These three tools have significantly different software architectures and do not share common input files or output data structures. Separate Monte Carlo tools were initially developed for each simulation. A recently-developed simulation output structure enables the use of the more sophisticated DSSA Monte Carlo tool with any of the core-simulations. The task of configuring the inputs for the nominal simulation is left to the existing tools. Once the nominal simulation is configured, the Monte Carlo tool perturbs the input set according to dispersion rules created by the analyst. These rules define the statistical distribution and parameters to be applied to each simulation input. Individual dispersed parameters are combined to create a dispersed set of simulation inputs. The Monte Carlo tool repeatedly executes the core-simulation with the dispersed inputs and stores the results for analysis. The analyst may define conditions on one or more output parameters at which to collect data slices. The tool provides a versatile interface for reviewing output of large Monte Carlo data sets while preserving the capability for detailed examination of individual dispersed trajectories. The Monte Carlo tool described in this paper has proven useful in planning several Crew Exploration Vehicle parachute tests.
机译:降落伞测试程序采用蒙特卡洛模拟技术来计划测试并做出与降落伞负载,下降率或其他参数有关的关键决策。本文介绍了基于MATLAB的蒙特卡洛工具的开发和使用,该工具用于NASA当前使用的三种降落伞跌落测试模拟。减速器系统仿真(DSS)是传统的6自由度(DOF)仿真,用于预测降落伞载荷和下降轨迹。减速器系统仿真应用程序(DSSA)是一种6自由度仿真,非常适合于模拟飞机抽出和下降的类似托盘的测试车辆。跌落试验车模拟(DTVSim)是一个2自由度的轨迹模拟,可用于快速周转分析任务。这三个工具具有明显不同的软件体系结构,并且不共享公共输入文件或输出数据结构。最初为每种模拟开发了单独的蒙特卡洛工具。最新开发的仿真输出结构可将更复杂的DSSA蒙特卡洛工具与任何核心仿真一起使用。配置用于名义仿真的输入的任务留给了现有工具。一旦配置了标称模拟,蒙特卡洛工具就会根据分析人员创建的离散规则来扰动输入集。这些规则定义了统计分布和要应用于每个模拟输入的参数。合并各个分散的参数以创建一组分散的模拟输入。蒙特卡洛工具使用分散的输入重复执行核心模拟,并存储结果以进行分析。分析人员可以在一个或多个输出参数上定义条件以收集数据切片。该工具提供了一个通用的界面,用于查看大型蒙特卡洛数据集的输出,同时保留了详细检查单个分散轨迹的功能。事实证明,本文所述的蒙特卡洛工具可用于计划乘员探空车降落伞测试。

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    Moore James W.;

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  • 年度 2011
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