具有两阶段概率保护的备份资源分配模型

Kento Yokouchi, Fujun He, E. Oki
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引用次数: 0

摘要

为了使多台物理机同时发生故障时所需的备份容量最小,提出了一种带两阶段概率保护的备份资源分配模型。概率保护确保用于备份的PM由于缺乏计算能力而无法备份的概率不超过给定的生存性参数。该模型通过将计算能力分配给具有概率保护的备份虚拟机来保护主虚拟机。由于不确定哪些主pm会失败,我们将鲁棒优化应用于概率保护。利用考虑生存能力参数和失效概率的表格,将该模型表述为一个混合整数线性规划问题。该模型将概率保护扩展到两个阶段;对第一阶段保护失败的虚拟机进行第二阶段保护,实现最终生存能力参数的概率保护。与传统的一级概率保护模型相比,该模型可以减少所需的总备份容量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Backup Resource Allocation Model with Two-Stage Probabilistic Protection
This paper proposes a backup resource allocation model with two-stage probabilistic protection to minimize the total required backup capacity for multiple simultaneous failures of physical machines (PMs). Probabilistic protection ensures that the probability that the PM used for backup fails to backup due to lack of computing capacity does not exceed a given survivability parameter. The proposed model protects the primary virtual machines by allocating computing capacity to backup PMs with probabilistic protection. Since it is uncertain which primary PMs fail, we apply robust optimization to the probabilistic protection. By using a table that takes into account the survivability parameter and the failure probability of PMs, this proposed model is formulated as a mixed integer linear programming problem. The proposed model extends the probabilistic protection to two stages; the VMs that fail to be protected in the first stage are protected in the second stage to achieve the probabilistic protection with the final survivability parameter. This model can reduce the total required backup capacity compared to the conventional model with one-stage probabilistic protection.
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