通过DRBD实现备用系统可靠性

S. Distefano
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引用次数: 4

摘要

备用方法在当前技术中具有战略重要性,因为它能够在延长系统寿命的同时减少对环境的影响,从而实现可靠性和成本之间的权衡。这在IT环境中特别有趣,因为对能源效率和环境问题的认识推动了新的计算形式和范式(“绿色”),以专门解决这些方面的问题。备用政策、机制和技术的特点是现象复杂,应加以充分调查。这种需求转化为对备用系统建模和评估的适当工具的强烈需求。本文提出了动态可靠性方框图(DRBD)的形式体系,将动态可靠性方框图扩展到动态可靠性方面的表示,以供备用系统评估采用。为了填补这一空白,对DRBD语义进行了修订,以涵盖备用系统的特定特性。然后,通过一个关键区域监控系统的案例研究,验证了DRBD方法在待机建模中的有效性,该系统根据特定的可靠性要求,通过热备冗余摄像机进行容量规划参数分析,设计系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Standby System Reliability through DRBD
The standby approach is of strategic importance in current technologies, since it is able to reduce the environmental impact while extending the system lifetime, allowing to achieve a trade-off among dependability properties and costs. This is particularly interesting in the IT context where the acquired awareness on energy efficiency and environmental issues pushed towards new forms and paradigms of ("green") computing to specifically address such aspects. Standby policies, mechanisms and techniques are characterized by complex phenomena that should be adequately investigated. This need is translated in a strong demand of adequate tools for standby system modelling and evaluation. In this paper the dynamic reliability block diagrams (DRBD) formalism, extending RBD to the representation of dynamic reliability aspects, is proposed for adoption in the standby system evaluation. In order to fill this gap, the DRBD semantics is revised to cover the specific peculiarities of standby system. Then, the effectiveness of the DRBD approach in standby modelling is demonstrated through a case study on a critical area surveillance system, where a capacity planning parametric analysis is performed to design the system through warm standby redundant cameras according to specific reliability requirements.
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