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On the effectiveness of a message-driven confidence-driven protocol for guarded software upgrading

机译:消息驱动的信任驱动协议对受保护软件升级的有效性

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A methodology called guarded software upgrading (GSU) is proposed to accomplish dependable onboard evolution for long-life deep-space missions. The core of the methodology is a low-cost error containment and recovery protocol that escorts an upgraded software component through onboard validation and guarded operation, mitigating the effect of residual faults in the upgraded component. The message-driven confidence-driven (MDCD) nature of the protocol eliminates the need for costly process coordination or atomic action, yet guarantees that the system will reach a consistent global state upon the completion of the rollback or roll-forward actions carried out by individual processes during error recovery. To validate the ability of the MDCD protocol to enhance system reliability when a software component undergoes onboard upgrading in a realistic, non-ideal environment, we conduct a stochastic activity network model-based analysis. The results confirm the effectiveness of the protocol as originally surmised. Moreover, a comparative study reveals that the dynamic confidence-driven approach is superior to static approaches and is the key to the attainment of cost-effectiveness.
机译:提出了一种称为“受保护软件升级”(GSU)的方法,以完成长寿命深空任务的可靠机载进化。该方法的核心是低成本的错误遏制和恢复协议,该协议通过机载验证和有保护的操作陪同升级的软件组件,从而减轻了升级组件中残留故障的影响。该协议的消息驱动的置信驱动(MDCD)性质消除了对昂贵的过程协调或原子操作的需求,但可以保证在由以下人员执行的回滚或前滚操作完成后,系统将达到一致的全局状态错误恢复期间的各个过程。为了验证当软件组件在现实的非理想环境中进行机载升级时,MDCD协议增强系统可靠性的能力,我们进行了基于随机活动网络模型的分析。结果证实了最初推测的方案的有效性。此外,一项比较研究表明,动态置信驱动的方法优于静态方法,并且是实现成本效益的关键。

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