通过模型驱动的解决方案在基于hla的模拟中启用响应流

A. D’Ambrogio, A. Falcone, A. Garro, Andrea Giglio
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引用次数: 2

摘要

由于所涉及的组件的异质性,现代系统正暴露出日益增加的复杂性。分布式仿真被广泛认为是对异构和复杂系统进行验证和确认活动的有效工具。不幸的是,使用分布式仿真框架和相关的实现技术需要适当的建模和仿真知识,以及大量的工作和软件开发技能。因此,不具备所需专业知识或背景的系统工程师通常不会处理分布式仿真。MONADS模型驱动方法的引入克服了这些限制,并为系统工程师提供了正确执行基于仿真的验证和验证活动的能力。该方法专门针对HLA(高级体系结构)分布式仿真框架,并引入了一种自动化方法,从系统工程领域的标准建模语言SysML中指定的系统模型中生成重要部分的HLA代码。然后,自动获得的代码将通过手动编程活动最终确定。通过将RxHLA框架的响应性特性集成到MONADS方法中,本文有助于简化并进一步减少此类手动活动的工作量。这种集成允许使用流来有效地管理基于hla的异步交互。本文描述了可用于将RxHLA集成到MONADS方法中的各种策略的技术细节,从而为MONADS用户提供了很大程度的灵活性。
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Enabling Reactive Streams in HLA-based Simulations through a Model-Driven Solution
Modern systems are exposing an ever increasing degree of complexity also due to the heterogeneity of the involved components. Distributed simulation is widely recognized as an effective tool to carry out verification and validation activities for heterogeneous and complex systems. Unfortunately, the use of distributed simulation frameworks and related implementation technologies require a proper modeling and simulation know-how, as well as a significant effort and software development skills. As a result, distributed simulation is not typically addressed by systems engineers who do not have the required expertise or background. The MONADS model-driven method has been introduced to overcome such limitations and provide systems engineers with the ability to properly carry out simulation-based verification and validation activities. The method specifically addresses the HLA (High Level Architecture) distributed simulation framework and introduces an automated approach to generate a significant portion of the HLA code from system models specified in SysML, the standard modeling language in the systems engineering field. The automatically obtained code is then to be finalized by a manual programming activity. This paper contributes to make easier and further reduce the effort of such a manual activity by integrating the reactive features of the RxHLA framework into the MONADS method. This integration enables the use of streams to effectively manage HLA-based asynchronous interactions. The paper describes the technical details of the various strategies that can be used to integrate RxHLA into the MONADS method, thus providing a significant degree of flexibility to MONADS users.
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