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A Hybrid Parachute Simulation Environment for the Orion Parachute Development Project

机译:用于Orion降落伞开发项目的混合降落伞模拟环境

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A parachute simulation environment (PSE) has been developed that aims to take advantage of legacy parachute simulation codes and modern object-oriented programming techniques. This hybrid simulation environment provides the parachute analyst with a natural and intuitive way to construct simulation tasks while preserving the pedigree and authority of established parachute simulations. NASA currently employs four simulation tools for developing and analyzing air-drop tests performed by the CEV Parachute Assembly System (CPAS) project. These tools were developed at different times, in different languages, and with different capabilities in mind. As a result, each tool has a distinct interface and set of inputs and outputs. However, regardless of the simulation code that is most appropriate for the type of test, engineers typically perform similar tasks for each drop test such as prediction of loads, assessment of altitude, and sequencing of disreefs or cutaways. An object-oriented approach to simulation configuration allows the analyst to choose models of real physical test articles (parachutes, vehicles, etc.) and sequence them to achieve the desired test conditions. Once configured, these objects are translated into traditional input lists and processed by the legacy simulation codes. This approach minimizes the number of simulation inputs that the engineer must track while configuring an input file. An object-oriented approach to simulation output allows a common set of post-processing functions to perform routine tasks such as plotting and timeline generation with minimal sensitivity to the simulation that generated the data. Flight test data may also be translated into the common output class to simplify test reconstruction and analysis.
机译:已经开发了一种降落伞仿真环境(PSE),旨在利用传统的降落伞仿真代码和现代的面向对象的编程技术。这种混合模拟环境为降落伞分析人员提供了一种自然而直观的方式来构造模拟任务,同时保留了已建立的降落伞模拟的血统和权威。 NASA当前使用四种仿真工具来开发和分析由CEV降落伞组装系统(CPAS)项目执行的空投测试。这些工具是在不同的时间以不同的语言开发的,并且具有不同的功能。结果,每个工具都具有不同的界面以及一组输入和输出。但是,无论最适合测试类型的模拟代码是什么,工程师通常会对每个跌落测试执行类似的任务,例如负载预测,高度评估以及残骸或切掉物的排序。面向对象的模拟配置方法使分析人员可以选择实际物理测试物品(降落伞,车辆等)的模型,并对它们进行排序以实现所需的测试条件。配置完成后,这些对象将转换为传统的输入列表,并由传统的模拟代码进行处理。这种方法最大程度地减少了工程师在配置输入文件时必须跟踪的模拟输入的数量。面向对象的模拟输出方法允许使用一组通用的后处理功能来执行例行任务,例如绘图和时间线生成,并且对生成数据的模拟的敏感性最小。飞行测试数据也可以转换为通用输出类别,以简化测试的重建和分析。

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