基于子系统相互作用分类方案的航天器机载设备功能模型的建立方法

A. Loskutov, V. Klykov, A. V. Stolyarov, D. Penkov
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引用次数: 0

摘要

本文提出了一种基于子系统相互影响分类方案的航天器机载设备技术状态自适应分布式控制方法。目的是提高航天器机载设备技术状态的自主监测效率。提出的构建航天器机载设备功能模型的方法,可以得到机载设备各子系统相互影响的分类方案,并将其作为飞行器控制模型,对遥测信息进行语义压缩。提出了为先进的车载控制系统开发具有技术状态自适应分布控制功能的专用软件的想法。在构建用于各种目的的车载设备的操作过程模型时,不排除使用该方法的可能性,包括在解决监测技术状况的问题时作为人工智能系统的一个元素。
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Method for building a model of the functioning of the on-board equipment of spacecrafts based on a classification scheme of interactions of subsystems
In this paper, a promising approach to solving the problem of adaptive-distributed control of the technical condition of onboard equipment of spacecraft based on the classification scheme of the mutual influence of subsystems is determined. Purpose is to improve the efficiency of autonomous monitoring of the technical condition of spacecraft on-board equipment. The proposed method for constructing a model of the functioning of onboard equipment of spacecraft made it possible to obtain a classification scheme for the mutual influence of subsystems of onboard equipment, the use of which as a vehicle control model provides semantic compression of telemetric information. The idea of creating a special software for advanced on-board control systems with the function of adaptive-distributed control of technical condition is proposed. The possibility of using the methodology is not excluded when constructing a model of the operation process of on-board equipment for objects of various purposes, including as an element of an artificial intelligence system when solving the problem of monitoring a technical condition.
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