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THE FEASIBILITY OF APPLYING SAFETY CERTIFIABLE SOFTWARE STANDARDS TO COMANCHE MISSION PROCESSING

机译:将安全可靠性软件标准应用于Comanche任务处理的可行性

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The RAH-66 Comanche helicopter represents state of the art technology that provides interoperable reconnaissance and attack capabilities for the battlefield of the future. The program is currently in the Engineering Manufacture and Development (EMD) phase with first low rate initial production delivery scheduled for summer 2008. The current trend toward Integrated Modular Avionics (IMA) for mission processing in military programs has long been the fundamental enabling concept of the Comanche Mission Equipment Package (MEP). Operational requirements and aggressive performance specifications relative to weight, size, processing power, and IO throughput necessitated use of IMA as well as many unique design and integration solutions resulting in an early instance of Open System Architecture technologies and approaches. As work continues on the program, typical problems associated with component obsolescence and a desire to reduce total ownership costs have meant evaluation of new technology and its application for augmentation as well as replacement of components in the current MEP. As in the past, the program continues to maximize incorporation of Commercial-Off-the-Shelf (COTS) products and the use of standards-based solutions as development cost reduction measures. New capabilities, just now being incorporated into commercial real-time operating systems, offer the potential of considering a COTS replacement for the Comanche MEP OS. Over the last few years, advancements in COTS computer and telecommunications technologies are enabling broader acceptance of COTS OSA concepts. These concepts leverage commercial designs more closely, incorporate more modern commercial standards, and offer less costly obsolescence mitigation while meeting military rotorcraft integration challenges. This paper will give an overview of those unique MEP architectural considerations and highlight the recent advances in embedded partitioned processing driven by safety certifiable Operating Systems as potential solutions for these issues while preserving a large investment in legacy code. It will also discuss how insertion of these technologies can position the Comanche MEP to successfully deal with future requirements such as Global Air Traffic Management (GATM) compatibility and Multiple Independent Level Security.
机译:Rah-66 Comanche Helicopter代表了最先进的技术,为未来战场提供可互操作的侦察和攻击能力。该方案目前在工程制造发展(EMD)阶段与第一低速率初始生产交付安排用于军事计划任务处理2008年夏天向集成模块化航空电子(IMA)目前的趋势早已根本使概念Comanche任务设备包(MEP)。操作要求和攻击性能规格相对于重量,尺寸,加工电源和IO吞吐量需要使用IMA以及许多独特的设计和集成解决方案,导致了开放系统架构技术和方法的早期实例。随着工作的继续,与组件过时的典型问题和降低总体所有权成本的愿望有用对新技术的评估及其在增强的应用以及更换当前MEP中的组件。正如过去,该计划继续最大限度地利用商业现货(COTS)产品以及基于标准的解决方案的使用作为开发成本降低措施。新功能,刚刚被纳入商业实时操作系统,提供了考虑对Comanche Mep OS更换的婴儿床的潜力。在过去的几年里,COTS计算机和电信技术的进步使得能够更广泛地接受COTS OSA概念。这些概念更加密切地利用商业设计,融合了更现代的商业标准,并在达到军事旋翼竞争挑战的同时提供更昂贵的过时缓解。本文将概述这些独特的MEP架构考虑因素,并突出了由安全可认证的操作系统驱动的嵌入分区处理的最新进展,因为这些问题的潜在解决方案,同时保留了遗留码的大量投资。它还将讨论这些技术的插入方式如何将Comanche MEP定位成成功处理未来的需求,例如全局空中交通管理(GATM)兼容性和多个独立级别安全性。

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