1553多路总线仿真分析算法的开发

A. Hussain, A. Khalil, A. Abbas
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引用次数: 2

摘要

MIL-STD-1553是一种通信网络协议,用于飞机、航天器和无人机等的生命线,在该网络上指挥控制计算机与平台的所有嵌入式航空电子子系统相互连接。1553系统集成商必须确保在数据总线上传输的所有消息(以千计)都符合1553标准对最大总线负载和延迟比率的定义限制。在分析的基础上,对各个子系统的ICD(接口控制文档)进行最大延迟时间(MDT)/刷新率(RR)或消息大小(字数)的设置/修改,使通信网络免于过载。该分析定义了整个通信系统中所有消息的MDT/RR和字数,从而实现最佳通信系统设计。本文通过模拟1553网络任务管理计算机(MMC)应用层的实时通信操作,开发了一种新的算法/工具Mux总线仿真分析工具(MUSAT),分析数据总线的负载及其延迟比。提出了一种新的数据总线静态优化算法(DBSOA),该算法将任意给定航电系统ICD消息的所有数据字调度到一个主数据帧的若干小帧中,使所有小帧几乎均匀加载。开发的工具(MUSAT)基于称为ISBC(改进的静态总线控制)算法的DBSOA改进版本,该算法根据各子系统的刷新率,异步地、动态地从DBSOA的预定块列表加载所有子系统的消息。在由100个主帧组成的指定总时间长度内,找到所有消息的完整数据总线加载和延迟比率。通过这种类型的消息调度和加载,1553通信网络的性能得到了显著改善,即总线加载和延迟比对于整个ICD的消息的选定刷新率/ mdt是最佳的。在此基础上设计的1553通信网络满足MIL-STD-1553的所有要求,且无通信过载。此外,ISBC算法使1553网络航电硬件集成周期中迭代次数最少成为可能,从而实现通信系统设计的优化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of 1553 mux bus simulation analysis algorithm
MIL-STD-1553 is a protocol for a communication network, the life-line of aircrafts, space vehicles and unmanned aerial vehicles (UAVs) etc., on which the command and control computer and all the embedded Avionics subsystems of the platform are interconnected. The 1553 system integrator has to ensure that the defined limits of the 1553 standard for maximum bus loading and delay ratios are met for all the messages (in thousands) travelling on the data bus. The ICD (interface control document) of the individual subsystems are set/modified for maximum delay time (MDT)/refresh rate (RR) or message size (word count) of the messages on the basis of an analysis to make the communication network free from overload. This analysis defines the MDT/RR and word count of all the messages of the overall communication system resulting in an optimal communication system design. In this paper we have developed a novel algorithm/tool i.e. Mux Bus Simulation analysis tool (MUSAT) that analyzes the data bus loading and its delay ratio by simulating the real time communication operation of the application layer of the mission management computer (MMC) of the 1553 network. A novel data bus static optimization algorithm (DBSOA) is developed which schedules all the data words of the messages of any given Avionics system ICD into a number of minor frames of a major frame of data such that all the minor frames are nearly uniformly loaded. The developed tool (MUSAT) is based on the improved version of the DBSOA called ISBC (improved static bus control) algorithm that loads the messages of all the sub systems from the scheduled block list of the DBSOA asynchronously and dynamically depending upon their refresh rates. Complete data bus loading and delay ratio of all the messages are found for a specified overall time length comprising of 100s of major frames. With this type of message scheduling and loading, the performance of the 1553 communication network improves considerably i.e. the bus loading and delay ratio are optimal for the selected refresh rates /MDTs of the messages of the complete ICD. The 1553 communication network designed on the basis of this analysis fulfills all the requirements of MIL-STD-1553, and is free from communication overload. Furthermore, the ISBC algorithm makes possible the minimum number of iterations during the 1553 network avionics hardware integration cycle that result in the optimization of the communication system design.
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