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Simulation Platform of the Aircraft Utility Management System

机译:飞机实用程序管理系统仿真平台

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摘要

The paper explores the integrated hardware and software architecture of the simulation platform of the aircraft utility management system (UMS) and the correlative technologies, viz. the 1553B bus real-time (RT) communication, the RT nodes with the RT operation system Windows NT+RTX and the RT hardware, the RT middleware TAO, the non-master-slave probabilistic clock synchronization, the static task allocation based on the heterogeneous distributed immune and genetic algorithm, the dynamic task scheduling realized by the algorithm based on the heuristic Myopic Algorithm idea, Feedback Control, Real-Time Fault-Tolerant and Adaptive Earliest Deadline First (FC-FT-AEDF) in the operation system layer and the flexible dynamic scheduling based on metrics feedback framework in the middleware layer, the RT database management system actualized by main memory database, multi-level storage and RT-SQL, and the utility subsystem simulation. The platform has the advantage of redundancy, fault tolerance, failure reconfiguration and extendability.
机译:本文探讨了飞机公用事业管理系统(UMS)仿真平台的集成硬件和软件架构以及相关技术,即。 1553B总线实时(RT)通信,带有RT操作系统Windows NT + RTX和RT硬件的RT节点,RT中间件TAO,非主从概率时钟同步,基于异构分布式免疫遗传算法,该算法基于启发式近视算法思想,反馈控制,实时容错和自适应最早截止时间优先(FC-FT-AEDF)在操作系统层实现的动态任务调度,以及中间件层中基于度量反馈框架的灵活动态调度,由主内存数据库,多层存储和RT-SQL实现的RT数据库管理系统以及实用程序子系统仿真。该平台具有冗余,容错,故障重新配置和可扩展性的优势。

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