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引用次数: 0
摘要
随着产品和系统的复杂性在广泛的工业部门中不断增加,对系统组织和优化方法的需求不断增加。MBSE增强了在系统的综合体系结构上获取、分析、通信和管理数据的能力。在本研究中,使用SysML对军事战斗监视场景进行建模,使用Magic Model Analyst执行框架插件生成状态机图和活动图。该研究旨在证明使用SysML创建和模拟监视系统的mbse支持框架的可行性,该监视系统通过无人驾驶Ariel车辆(UAV)监视和报告装甲战车(战斗坦克)的健康状态和性能。系统架构师的神奇系统,它积极地促进了系统开发架构框架,被用来构造符合sysml的模型,允许创建复杂的模型图。无人机监视场景的构建强调修改图特征的能力,并确保将更改传达给所有链接的模型图。这项研究建立在先前发表的用于创建数字双胞胎的mbse支持的概念框架之上。本研究的目的是测试和验证框架的程序。
Modeling A UAV Surveillance Scenario- An Applied MBSE Approach
As the complexity of both products and systems increases across a wide range of industry sectors, there has been an influx in demand for methods of system organization and optimization. MBSE enhances the ability to obtain, analyze, communicate, and manage data on a comprehensive architecture of a system. In this study, a military combat surveillance scenario is modeled using SysML generating state machine diagrams and activity diagrams using the Magic Model Analyst execution framework plugin. This study seeks to prove the feasibility of an MBSE-enabled framework using SysML to create and simulate a surveillance system that monitors and reports on the health status and performance of an armored fighting vehicle (combat tank) through an Unmanned Ariel Vehicle (UAV). The Magic System of Systems Architect, which actively promotes system development architectural frameworks, was used to construct SysML-compliant models, allowing the creation of intricate model diagrams. The construction of the UAV surveillance scenario emphasized the capability of modifying a diagram feature and ensuring that the alteration is communicated to all linked model diagrams. This study builds on a previously published MBSE-enabled conceptual framework for creating digital twins. The purpose of this research is to test and validate the framework's procedures.