首页> 外文会议>Conference on Modeling, Simulation, and Calibration of Space-Based Systems; 20040415; Orlando,FL; US >SimBox: a simulation-based scalable architecture for distributed command and control of spaceport and service constellations
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SimBox: a simulation-based scalable architecture for distributed command and control of spaceport and service constellations

机译:SimBox:基于仿真的可扩展体系结构,用于分布式命令和对空间端口和服务群的控制

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摘要

In this paper, Aximetric proposes a decentralized Command and Control (C2) architecture for a distributed control of a cluster of on-board health monitoring and software enabled control systems called SimBOX that will use some of the real-time infrastructure (RTI) functionality from the current military real-time simulation architecture. The uniqueness of the approach is to provide a "plug and play environment" for various system components that run at various data rates (Hz) and the ability to replicate or transfer C2 operations to various subsystems in a scalable manner. This is possible by providing a communication bus called "Distributed Shared Data Bus" and a distributed computing environment used to scale the control needs by providing a self-contained computing, data logging and control function module that can be rapidly reconfigured to perform different functions. This kind of software-enabled control is very much needed to meet the needs of future aerospace command and control functions.
机译:在本文中,Aximetric提出了一种分散式的命令和控制(C2)架构,用于分布式控制一组称为SimBOX的板载健康监控和软件支持的控制系统,该系统将使用来自以下系统的一些实时基础架构(RTI)功能:当前的军事实时仿真架构。该方法的唯一性在于为以各种数据速率(Hz)运行的各种系统组件提供“即插即用环境”,并能够以可扩展的方式将C2操作复制或传输到各种子系统。通过提供称为“分布式共享数据总线”的通信总线和用于通过提供可快速重新配置以执行不同功能的自包含计算,数据记录和控制功能模块来扩展控制需求的分布式计算环境,这是可能的。满足未来航空航天命令和控制功能的需求非常需要这种软件支持的控制。

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