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TACD: A throughput allocation method based on variant of Cobb-Douglas for hybrid storage system

机译:TACD:基于Cobb-Douglas变体的吞吐量分配方法,用于混合储存系统

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The development of the cloud and data centers alike has caused users to increasingly share storage systems, and storage systems have adopted SSDs to improve performance. The number of users is growing sharply and causing resource competition, so the throughput allocation of a hybrid storage system has an important effect on users' performance. A hybrid storage architect faces a challenge: sharing I/O throughput resources between SSDs and HDDs fairly with high resource utilization. Drawing on economic game-theory, many methods based on Leontief preference have been proposed to determine fair throughput allocation in a hybrid storage system with having the properties of Sharing Incentive (SI), Envy Freeness (EF) and Pareto Optimality (PO). However, users' workload characteristics vary because of the adoption of SSDs, so there is heterogeneity among the storage media. The heterogeneity of storage media and the diversity of user workloads together create more constraints on fairness, which imposes restrictions to improve the resource utilization. To improve the resource utilization, some researchers have proposed relaxing the limitation of fairness properties by adjusting users' allocations. However, when adjusting the allocation between users, some users' allocations are reduced but others' are improved, with the goal of increasing the resource utilization of the whole system, this will pose a problem because of the Leontief preference restriction: some users' performance is degraded, while other users' performance is improved.In this paper, we first propose one variant of the Cobb-Douglas preference based on users' workloads and allocations, and then present a throughput allocation model based on this variant named TACD that can capture the effects of diminishing returns and substitutability in throughput allocation for hybrid storage. By making use of these effects, TACD can improve some users' performance while providing the same performance for other users and achieving higher resource utilization in the whole system, and it can provide a fair allocation while enjoying SI, EF and PO properties. The variant of the Cobb-Douglas preference proposed in this paper has taken consideration of users' workloads, so TACD can conduct the throughput allocation based on these workloads for meeting the performance requirements of users reasonably. Extensive experiments are conducted to prove the effectiveness of TACD. The simulation results show that TACD can fit the throughput allocation of hybrid storage system very well. The Linux results show that compared with the allocation method based on Leontief preference, TACD can provide a higher resource utilization and performance for users throughout the system, it can improve some users' performance when maintaining comparable performance for other users, in contrast to the Leontief method based on weaker fairness under the same resource utilization, and its allocation result enjoys SI, EF and PO properties. (C) 2019 Elsevier Inc. All rights reserved.
机译:云和数据中心的开发相似使用户越来越叠加存储系统,存储系统采用SSD来提高性能。用户数量急剧增长并导致资源竞争,因此混合储存系统的吞吐量分配对用户的性能具有重要影响。混合存储架构师面临挑战:公平地利用高资源利用率在SSD和HDD之间共享I / O吞吐量资源。绘制经济博弈论,提出了许多基于Leontief优先的方法,以确定混合储存系统中的公平通量分配,具有共享激励(Si),嫉妒Freeness(EF)和Pareto最优性(PO)。然而,用户的工作负载特性因通过SSD而变化,因此存储介质之间存在异质性。存储介质的异质性和用户工作负载的多样性在一起创造了更多关于公平的限制,这施加了提高资源利用的限制。为了提高资源利用率,一些研究人员通过调整用户的分配,提出了放松公平性质的限制。但是,在调整用户之间的分配时,有些用户的分配减少,但其他用户的分配得到改善,目的是提高整个系统的资源利用率,这将为出现问题,因为Leontief偏好限制:一些用户的性能劣化,而其他用户的性能得到改善。在本文中,我们首先提出了基于用户的工作负载和分配的COBB-DOGGLAS偏好的一个变体,然后介绍基于该变体的吞吐量分配模型,该变体可以捕获。杂交贮藏通量分配中递回及替代性降低的影响。通过利用这些效果,TACD可以提高一些用户的性能,同时为其他用户提供相同的性能,并在整个系统中实现更高的资源利用率,并且它可以在享受SI,EF和PO属性的同时提供公平分配。本文提出的Cobb-Douglas偏好的变体已经考虑了用户的工作负载,因此TACD可以根据这些工作负载进行吞吐量分配,以合理地满足用户的性能要求。进行了广泛的实验以证明TACD的有效性。仿真结果表明,TACD可以很好地符合混合储存系统的吞吐量分配。 Linux结果表明,与基于Leontieie偏好的分配方法相比,TACD可以为整个系统提供更高的资源利用率和性能,可以在对其他用户保持可比性的性能时提高一些用户的性能,与Leontief相反基于相同资源利用率下较弱公平性的方法,其分配结果享有SI,EF和PO属性。 (c)2019 Elsevier Inc.保留所有权利。

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  • 作者单位

    Beihang Univ State Key Lab Software Dev Environm Beijing 100191 Peoples R China|Beihang Univ Sch Comp Sci & Engn Beijing 100191 Peoples R China;

    Shanghai Jiao Tong Univ Dept Comp Sci & Engn Shanghai 200240 Peoples R China;

    Beihang Univ State Key Lab Software Dev Environm Beijing 100191 Peoples R China|Beihang Univ Sch Comp Sci & Engn Beijing 100191 Peoples R China;

    Beihang Univ State Key Lab Software Dev Environm Beijing 100191 Peoples R China|Beihang Univ Sch Comp Sci & Engn Beijing 100191 Peoples R China;

    Beijing Language & Culture Univ Sch Commun Sci Beijing 100083 Peoples R China;

    Beihang Univ State Key Lab Software Dev Environm Beijing 100191 Peoples R China|Beihang Univ Sch Comp Sci & Engn Beijing 100191 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Throughput allocation; Variant of Cobb-Douglas; Hybrid storage; Fairness; Efficiency;

    机译:吞吐量分配;Cobb-Douglas的变体;混合储存;公平;效率;

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