自动化规划系统的验证和确认的挑战(主题演讲)

J. Frank
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引用次数: 1

摘要

任务规划是空间任务操作的核心,并受益于基于模型的规划软件的进步。模型是对目标、动作、约束和偏好的描述,计划者通过这些来产生计划。然而,开发、验证和确认规划模型是一项困难的任务。任务规划约束和偏好来自许多来源,包括模拟器和工程规范文件。随着任务约束的发展,规划领域建模者必须使用可用的源数据有效地添加和更新模型约束,快速捕获错误,并纠正模型。错误模型的后果非常严重,特别是在空间操作环境中。我们首先描述了空间操作环境,特别是任务规划系统的作用。然后,我们描述了基于模型的规划,并简要回顾了设计基于模型的任务规划工具的实践现状以及模型开发人员面临的挑战。然后,我们描述了一种交互式模型开发环境(IMDE)方法来开发任务规划系统。该方法集成了建模和仿真环境,减少了模型编辑时间,自动生成仿真以评估计划,并通过评估仿真输出自动识别建模错误。IMDE方法在月球大气和尘埃环境探测器(LADEE)飞行软件的一个小子集上进行了测试,以演示如何开发LADEE任务规划系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The challenges of verification and validation of automated planning systems (keynote)
Mission planning is central to space mission operations, and has benefited from advances in model-based planning software. A model is a description of the objects, actions, constraints and preferences that the planner reasons over to generate plans. Developing, verifying and validating a planning model is, however, a difficult task. Mission planning constraints and preferences arise from many sources, including simulators and engineering specification documents. As mission constraints evolve, planning domain modelers must add and update model constraints efficiently using the available source data, catching errors quickly, and correcting the model. The consequences of erroneous models are very high, especially in the space operations environment. We first describe the space operations environment, particularly the role of the mission planning system. We then describe model-based planning, and briefly review the current state of the practice in designing model-based mission planning tools and the challenges facing model developers. We then describe an Interactive Model Development Environment (IMDE) approach to developing mission planning systems. This approach integrates modeling and simulation environments to reduce model editing time, generate simulations automatically to evaluate plans, and identify modeling errors automatically by evaluating simulation output. The IMDE approach was tested on a small subset of the Lunar Atmosphere and Dust Environment Explorer (LADEE) flight software to demonstrate how to develop the LADEE mission planning system.
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