Balanced memory architecture for high I/O intensive information services for Autonomous Decentralized System

Hironao Takahashi, K. Mori, H. F. Ahmad
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引用次数: 7

Abstract

The increasing disparity between CPU speed and storage system require novel techniques to achieve high I/Os for computing systems with high assurance properties, such as timeliness, fault tolerance and online expansion. Proposed architecture is balanced memory architecture which is for high I/O(Input Output) intensive Autonomous Decentralized System using Data Transmission System memory concept in DF (Data Field) to achieve timeliness in information systems to solve today's High I/O intensive application market demand. The proposed architecture also implements two new memory caches in the system, namely L3 that works at local memory level and L4, on top of HDD. Moreover, the proposed —high I/O intensive distributed system concept called Autonomous Decentralized Data Transmission System (ADDTS) that is composed of triosubsystems with three autonomous decentralized remote storage nodes. These remote storage nodes have online expansion technique for storage system to improve system capacity. Therefore, the proposed system architecture solves previous issues and it achieves flexible data storage system that increases or decreases its capacity as per the requirements. The I/O performance evaluation shows significant enhancement over the traditional computing and ADS systems.
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面向自治分散系统高I/O密集型信息服务的均衡内存架构
随着CPU速度和存储系统之间的差距越来越大,需要新的技术来实现高I/ o的计算系统,具有高保证性质,如时效性、容错性和在线扩展。本文提出的架构是针对高I/O(输入输出)密集型自治分散系统的均衡内存架构,利用DF(数据场)中的数据传输系统内存概念,实现信息系统的及时性,解决当今高I/O密集型应用市场的需求。提议的架构还在系统中实现了两个新的内存缓存,即工作在本地内存级别的L3和位于HDD之上的L4。此外,提出的高I/O密集型分布式系统概念称为自治分散数据传输系统(ADDTS),该系统由具有三个自治分散远程存储节点的三子系统组成。这些远程存储节点对存储系统具有在线扩展技术,以提高系统容量。因此,本文提出的系统架构解决了之前的问题,实现了灵活的数据存储系统,可根据需求增减容量。I/O性能评估显示,与传统的计算和ADS系统相比,该系统有了显著的提高。
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