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CEA: A Cyclic Expansion Algorithm for data migration in parallel video servers

机译:CEA:用于并行视频服务器中数据迁移的循环扩展算法

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Parallel video servers can achieve highly storage-saving and granularly load-balancing, but they suffer from a system expansion problem. As the number of users continuously increases, the system inevitably needs to expand the number of video servers. However, the expansion of a parallel video server system is not as simple as that of a replicated video server system. Hence, this work develops an efficient expansion algorithm, called the Cyclic Expansion Algorithm (CEA), for parallel video servers. The proposed CEA algorithm has several good features. First, the data layout of each video content exhibits periodicity. Consequently, the meta-data size of each video and the complexity of the CEA algorithm are reduced. Second, the number of required data movements during a system expansion is optimized. Third, the total number of required XOR recomputations for updating parity blocks during an expansion is also minimized. Additionally, the new CEA can be applied to a variety of distributed storage systems, such as the cloud-based storage systems using striping and parity check techniques.
机译:并行视频服务器可以节省大量存储空间并实现细粒度的负载平衡,但是它们会遇到系统扩展问题。随着用户数量的不断增加,系统不可避免地需要扩展视频服务器的数量。但是,并行视频服务器系统的扩展并不像复制视频服务器系统那样简单。因此,这项工作为并行视频服务器开发了一种有效的扩展算法,称为循环扩展算法(CEA)。所提出的CEA算法具有几个良好的特征。首先,每个视频内容的数据布局表现出周期性。因此,减少了每个视频的元数据大小和CEA算法的复杂性。其次,优化了系统扩展期间所需的数据移动次数。第三,在扩展期间用于更新奇偶校验块的所需XOR重新计算的总数也被最小化。此外,新的CEA可以应用于各种分布式存储系统,例如使用条带化和奇偶校验技术的基于云的存储系统。

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