在基于DEVS/DoDAF的生命周期架构开发中,使用基于规则的元模型加强OV-6a语义

S. Mittal, A. Mitra, Amar Gupta, B. Zeigler
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引用次数: 13

摘要

分布式测试环境的开发必须遵守最近国防部(DoD)的命令,要求采用国防部体系结构框架(DoDAF)来表达高层次的系统和操作需求和体系结构。不幸的是,DoDAF和DoD以网络为中心的命令对测试和评估构成了重大挑战,因为必须对DoDAF规范进行评估,以查看它们是否满足需求和目标,但它们并没有以适合这种评估的形式表达。DoDAF是集成体系结构的基础,并提供与操作、系统和技术视图相关的广泛层次的规范。在我们早期的工作中,我们描述了一种在基于DEVS(离散事件系统规范)的开发环境中支持DoDAF体系结构规范的方法,用于所需仿真模型的半自动化构造。结果是一个增强的系统生命周期开发过程,它以一种完整的方式包括开发和测试。我们还使用XML开发了自动模型生成,这为ov成为Web服务体系结构中提供服务的组件铺平了道路。在本文中,我们提出了一个操作视图文档OV-6a的语义结构,它将有助于这些半自动化模型的开发。我们将描述如何在更广义的元模型框架中构建0V-6a,这样每个规则都可以简化为有意义的代码,这些代码通过自然语言处理(NLP)方法自动构建,并进一步简化为基于DEVS的模型。本文还概述了这些企业体系结构的生命周期开发方法,以及如何在定制的业务/特定于领域的规则和策略结构中使用公共企业领域模型
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Strengthening OV-6a Semantics with Rule-Based Meta-models in DEVS/DoDAF based Life-cycle Architectures Development
The development of a distributed testing environment would have to comply with recent Department of Defense (DoD) mandates requiring that the DoD architectural framework (DoDAF) be adopted to express high level system and operational requirements and architectures. Unfortunately, DoDAF and DoD net-centric mandates pose significant challenges to testing and evaluation since DoDAF specifications must be evaluated to see if they meet requirements and objectives, yet they are not expressed in a form that is amenable to such evaluation. DoDAF is the basis for integrated architectures and provides broad levels of specification related to operational, system, and technical views. In our earlier work, we described an approach to support specification of DoDAF architectures within a development environment based on DEVS (discrete event system specification) for semi-automated construction of the needed simulation models. The result is an enhanced system lifecycle development process that includes both development and testing in an integral manner. We also developed automated model generation using XML which paves the way for OVs to become service-providing components in the Web services architecture. In this paper we present the semantic structure for one of the operational view documents OV-6a that would aid the development of these semi-automated models. We will describe how 0V-6a can be structured in a more generalized meta-model framework such that every rule is reducible to meaningful code which is automatedly constructed through natural language processing (NLP) methods and further be reduced to DEVS based models. The paper also presents an overview of the life-cycle development methodology for these enterprise architectures and how a common enterprise domain-model can be used in customized business/domain-specific rules and policy structures
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