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进化存储系统中的物理进化
Physical Evolution in ERAID System
【摘要】 系统整体结构不能很好地适应系统磁盘的动态变化,这是现有存储系统中普遍存在的一个问题。而我们提出的进化存储系统ERAID(EvolvingRAIDsystem)是一个动态存储系统,能够在不停止系统I/O服务的前提下,采用DAA、HDAA、e-HDAA算法分别实现存储系统中同构磁盘的添加、异构磁盘的添加以及异构磁盘的替换,即实现存储系统的物理进化。仿真实验结果表明在较小的系统开销下,DAA、HDAA、e-HDAA算法能逐渐吸收添加或替换到ERAID系统的(同构或异构)磁盘,使ERAID系统获得优化的存储容量和存储性能。
【Abstract】 The system architecture cannot adapt to the dynamic change of system disks, which is a general problem in traditional storage system. While ERAID system we proposed is a dynamic storage system. To implement the physical evolution of ERAID system, it applies DAA, HDAA, e-HDAA algorithms to cope with the situations of homogeneous disk adding, heterogeneous disk adding, and heterogeneous disk replacement respectively, without stopping the system I/O service. Simulation results demonstrate that through applying DAA, HDAA, e-HDAA algorithms, ERAID system can assimilate the adding/replacing homogeneous/heterogeneous disks gradually with little extra system overhead, and achieve optimized storage capacity and I/O performance.
- 【文献出处】 计算机科学 ,Computer Science , 编辑部邮箱 ,2006年12期
- 【分类号】TP333
- 【下载频次】82