论文部分内容阅读
NAVSEA 03K41负责形成作战系统战斗管理组织(BMO)和功能流程图(FFD)。几年前,NAVSEA提供资源,实施支援BMO和FFD开发和验证的功能分析。实行分析中的主要障碍是要获得如何构造功能层次的一致意见。由于选择了非最优层次组织;因此,难以定义、寻找、使用和验证功能。认识到这项工作的不足,于是,进行研究,评估最新的结构化建模技术、概念和方法。詹姆斯·马丁找到两个建模概念,可应用于作战系统功能分析:风险计划建模概念和功能分解建模概念。韦顿、本利和巴劳的结构建模定义提供了使用马丁概念的指南。在以后的BMO和FFD开发工作中,发展了舰艇的作战系统(SCS)建模概念并开发了一个SCS模型。本文叙述在BMO和FFD开发和验证过程中如何使用建模概念和工具。来自SCS模型的数据提供了定义作战系统要求(例如,软件、数据显示、数据库、网络连接等)的基础。
NAVSEA 03K41 is responsible for forming the Battle Systems Combat Management Organization (BMO) and Functional Flow Chart (FFD). A few years ago, NAVSEA provided resources to implement a functional analysis that supports BMO and FFD development and verification. The main obstacle in implementing the analysis is obtaining consensus on how to construct the functional hierarchy. Because of the non-optimal hierarchical organization selected; therefore, it is difficult to define, find, use and verify features. Recognizing this lack of work, a study was then conducted to assess the latest structured modeling techniques, concepts and methods. James Martin has found two modeling concepts that can be applied to combat system functional analysis: risk planning modeling concepts and functional decomposition modeling concepts. The structural modeling definitions of Wighton, Bentley, and Baluau provide guidelines for using Martin’s concepts. In the future development of BMO and FFD, the concept of combat system (SCS) modeling of ships was developed and an SCS model was developed. This article describes how to use modeling concepts and tools in the development and validation of BMO and FFD. Data from the SCS model provides the basis for defining operational system requirements (eg, software, data displays, databases, network connections, etc.).