Real-time embedded software design for onboard computer of Anti-Ballistic missile system

Hemant Kumar Rathore, Mahender Katukuri, Dl Seshagiri Rao, Bhvs Narayana Murthy
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引用次数: 5

Abstract

The Missile Onboard Computer (OBC) is an embedded computer to perform control, guidance, target data estimation, mission sequencing and various other critical operations during flight. The real-time embedded software for the OBC must be designed to achieve deterministic response times and quite minimal jitters (in the order of 50-100μs) for the accurate control and guidance operations and precise scheduling of computational modules and IO messages subsequently. The synchronization mechanisms of OBC with all other avionics subsystems has to ensure that it gets the latest updates of the data from sensors and outputs the latest command to actuators within specified bounds of time. For the specific case of Anti-Ballistic missile system, these requirements become further challenging to achieve because of the higher velocities of the moving target and the interceptor missile which demands higher data update rates from sensors, high frequent commands to control system. This paper discusses the design issues of the OBC software of Anti-Ballistic Air defense missile system.
反弹道导弹系统机载计算机实时嵌入式软件设计
导弹机载计算机(OBC)是一种嵌入式计算机,用于在飞行过程中执行控制、制导、目标数据估计、任务排序和各种其他关键操作。OBC的实时嵌入式软件必须设计成具有确定性的响应时间和相当小的抖动(在50-100μs量级),以便精确控制和引导操作以及随后的计算模块和IO消息的精确调度。OBC与所有其他航电子系统的同步机制必须确保它在规定的时间范围内从传感器获得最新的数据更新并向执行器输出最新的命令。针对反弹道导弹系统的具体情况,由于运动目标和拦截导弹的速度较快,对传感器的数据更新速率要求较高,对控制系统的指令频率较高,这些要求变得更加难以实现。本文讨论了反弹道防空导弹系统OBC软件的设计问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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