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首页> 外文期刊>IEEE Aerospace and Electronic Systems Magazine >Methodology for cost-effective software fault tolerance formission-critical systems
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Methodology for cost-effective software fault tolerance formission-critical systems

机译:关键任务系统的经济高效软件容错方法

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A computing capabilities continue to advance, there will be a concurrent rise in the number of both hardware and software faults. These will be caused by the greater volume of more complex software, by the increased number of untested software states, and by more incidents of hardware/software interaction faults as a result of increased hardware speed and density. The traditional software implemented fault tolerance: approaches have been successfully utilized in life-critical systems, such as digital flight controls, where their additional costs can be easily justified. Examples include N-Version Programming and Recovery Block approaches. However, there is still a need for dependable computing for mission-critical applications as well. Often, these traditional techniques are avoided for mission-critical systems due to the difficulty in justifying their extra up-front development cost. We provide an alternative for the high “sunk cost” of traditional software fault tolerance techniques. The methodology, called data fusion integrity processes (DFIPs), is a simple, yet effective technique for mission-critical systems. In addition, the approach establishes a framework from which other costlier, more extensive traditional techniques can be added. We present details of the DFIP methodology and a DFIP framework for Ada programs. We also briefly discuss development of a DFIP code generation system which exploits Java that will enable users to quickly build a DFIP framework in Ada, and select reusable DFIP component methods
机译:计算能力不断提高,硬件和软件故障的数量将同时增加。这些是由于更复杂的软件数量增加,未经测试的软件状态数量增加以及由于硬件速度和密度提高而导致的更多硬件/软件交互故障事件引起的。传统的软件实现了容错能力:方法已成功用于对生命至关重要的系统中,例如数字飞行控制,其附加成本很容易得到证明。示例包括N版本编程和恢复块方法。但是,仍然需要用于关键任务应用程序的可靠计算。通常,由于难以证明其额外的前期开发成本的合理性,因此对于任务关键型系统避免使用这些传统技术。我们为传统软件容错技术的高“沉没成本”提供了替代方案。该方法称为数据融合完整性过程(DFIP),是一种用于任务关键型系统的简单但有效的技术。此外,该方法建立了一个框架,可以从中添加其他更昂贵,更广泛的传统技术。我们将介绍DFIP方法的详细信息以及Ada程序的DFIP框架。我们还简要地讨论了利用Java的DFIP代码生成系统的开发,该系统将使用户能够在Ada中快速构建DFIP框架,并选择可重用的DFIP组件方法。

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