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A study of suitable fault tolerance frameworks for an energy-efficient storage system

机译:节能存储系统合适的容错框架研究

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A new kind of cloud service, called Database-as-aservice (DaaS), provides a novel paradigm which allows data to be stored in remote databases. The types of database used in remote sites can be divided into two categories: Relational Databases (RDB) and NoSQL. NoSQL databases store data in a flexible format, and without schema, so NoSQL databases can be easily scaled across multiple devices. Because of the advantages of the NoSQL databases, many large data applications use NoSQL databases as the backend data management system. Because NoSQL databases usually access the stored data as files, through a distributed file system, the problem of decentralized data management is critical in NoSQL databases. In order to address this issue, many energy-efficient algorithms for file placement are used in distributed file systems. However, these energy-efficient algorithms only focus on reducing the power consumption of storage systems and they ignore the cost of data reliability, which is affected by frequently setting the disk status to standby mode. To maintain data reliability, energy-efficient storage systems usually combine framework of power conservation and a fault tolerance mechanism. However, most developers of energy-efficient frameworks do not consider whether the fault tolerance mechanism can avoid data loss when this combination is used for energy-efficient storage systems. This study proposes a general energy-efficient framework that can be integrated different fault tolerance mechanisms. The experimental results show that the capability of the proposed framework with different erasure code algorithms.
机译:一种新的云服务,称为数据库 - Aservice(DAAS),提供了一种新的范例,允许数据存储在远程数据库中。远程站点中使用的数据库类型可分为两类:关系数据库(RDB)和NoSQL。 NoSQL数据库以灵活的格式存储数据,没有模式,因此NoSQL数据库可以在多个设备上轻松缩放。由于NoSQL数据库的优点,许多大数据应用程序使用NoSQL数据库作为后端数据管理系统。由于NoSQL数据库通常通过分布式文件系统访问存储的数据作为文件,因此分散的数据管理问题在NoSQL数据库中至关重要。为了解决这个问题,在分布式文件系统中使用了许多用于文件放置的节能算法。然而,这些节能算法仅关注减少存储系统的功耗,并且它们忽略了数据可靠性的成本,这受频率频繁将磁盘状态设置为待机模式而受到影响。为了维持数据可靠性,节能存储系统通常将动力节约框架和容错机构组合。然而,大多数节能框架的开发人员不考虑在该组合用于节能存储系统时是否可以避免容错机制是否可以避免数据丢失。本研究提出了一种可以集成不同的容错机制的一般节能框架。实验结果表明,具有不同擦除码算法的提出框架的能力。

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