Design of reliable software via general combination of N-version programming and acceptance testing

B. Parhami
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引用次数: 11

Abstract

N-version programming (NVP) and acceptance testing (AT) are techniques for ensuring reliable computation results from imperfect software. Various symmetric combinations of NVP and AT have also been suggested. We take the view that one can insert an AT at virtually any point in a suitably constructed multi-channel computation graph and that judicious placement of ATs will lead to cost-effective reliability improvement. Hence, as a general framework for the creation, representation, and analysis of combined NVP-AT schemes, we introduce MTV graphs, and their simplified data-driven version called DD-MTV graphs, composed of computation module (M), acceptance test (T), and voter (V) building blocks. Previous NVP-AT schemes, such as consensus recovery blocks, recoverable N-version blocks, and N-self-checking programs can be viewed as special cases of our general combining scheme. Results on the design and analysis of new NVP-AT schemes are presented and the reliability improvements are quantified. We show, e.g., that certain, somewhat asymmetric, combinations of M, T, and V building blocks can lead to higher reliabilities than previously proposed symmetric arrangements having comparable or higher complexities.
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通过n版本编程和验收测试的一般结合设计可靠的软件
n版本编程(NVP)和验收测试(AT)是在不完善的软件中保证可靠计算结果的技术。还提出了NVP和AT的各种对称组合。我们认为,在适当构建的多通道计算图中,几乎可以在任何点插入自动测试器,并且明智地放置自动测试器将导致经济有效的可靠性改进。因此,作为创建、表示和分析组合NVP-AT方案的一般框架,我们引入了MTV图,以及它们的简化数据驱动版本,称为DD-MTV图,由计算模块(M)、验收测试(T)和投票人(V)构建块组成。以往的NVP-AT方案,如共识恢复块、可恢复的n版本块、n个自检程序等,都可以看作是我们一般组合方案的特例。给出了新型NVP-AT方案的设计和分析结果,并对可靠性改进进行了量化。例如,我们表明,M、T和V构建块的某些不对称组合可以比以前提出的具有相当或更高复杂性的对称安排带来更高的可靠性。
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