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The process of transferring the high-bandwidth data streams of many reliable and scalable across many applications and storage devices and a number of computer systems

机译:跨许多应用程序和存储设备以及许多计算机系统传输许多可靠且可扩展的高带宽数据流的过程

摘要

Multiple applications request data from multiple storage units over a computer network. The data is divided into segments and each segment is distributed randomly on one of several storage units, independent of the storage units on which other segments of the media data are stored. Redundancy information corresponding to each segment also is distributed randomly over the storage units. The redundancy information for a segment may be a copy of the segment, such that each segment is stored on at least two storage units. The redundancy information also may be based on two or more segments. This random distribution of segments of data and corresponding redundancy information improves both scalability and reliability. When a storage unit fails, its load is distributed evenly over to remaining storage units and its lost data may be recovered because of the redundancy information. When an application requests a selected segment of data, the request may be processed by the storage unit with the shortest queue of requests. Random fluctuations in the load applied by multiple applications on multiple storage units are balanced nearly equally over all of the storage units. This combination of techniques results in a system which can transfer multiple, independent high-bandwidth streams of data in a scalable manner in both directions between multiple applications and multiple storage units.
机译:多个应用程序通过计算机网络从多个存储单元请求数据。数据分为多个部分,每个部分随机分布在几个存储单元之一上,而与存储媒体数据其他部分的存储单元无关。与每个段相对应的冗余信息也随机分布在存储单元上。段的冗余信息可以是该段的副本,从而每个段存储在至少两个存储单元上。冗余信息也可以基于两个或更多个段。数据段和相应冗余信息的这种随机分布提高了可伸缩性和可靠性。当存储单元发生故障时,由于冗余信息,其负载会平均分配到其余存储单元,并且丢失的数据可能会得到恢复。当应用程序请求选定的数据段时,该请求可以由存储单元以最短的请求队列进行处理。多个应用程序对多个存储单元施加的负载的随机波动几乎在所有存储单元上均等地平衡。技术的这种结合导致了一个系统,该系统可以在多个应用程序和多个存储单元之间的两个方向上以可伸缩的方式传输多个独立的高带宽数据流。

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