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  • Computer Operations and Hardware  (1)
  • Key words:Parallel disk systems – Performance tuning – File striping – Data allocation – Load balancing – Disk cooling  (1)
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  • 1
    Electronic Resource
    Electronic Resource
    Springer
    The VLDB journal 7 (1998), S. 48-66 
    ISSN: 0949-877X
    Keywords: Key words:Parallel disk systems – Performance tuning – File striping – Data allocation – Load balancing – Disk cooling
    Source: Springer Online Journal Archives 1860-2000
    Topics: Computer Science
    Notes: Abstract. Parallel disk systems provide opportunities for exploiting I/O parallelism in two possible ways, namely via inter-request and intra-request parallelism. In this paper, we discuss the main issues in performance tuning of such systems, namely striping and load balancing, and show their relationship to response time and throughput. We outline the main components of an intelligent, self-reliant file system that aims to optimize striping by taking into account the requirements of the applications, and performs load balancing by judicious file allocation and dynamic redistributions of the data when access patterns change. Our system uses simple but effective heuristics that incur only little overhead. We present performance experiments based on synthetic workloads and real-life traces.
    Type of Medium: Electronic Resource
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  • 2
    Publication Date: 2019-07-13
    Description: Data warehouses store large volumes of data which are used frequently by decision support applications. Such applications involve complex queries. Query performance in such an environment is critical because decision support applications often require interactive query response time. Because data warehouses are updated infrequently, it becomes possible to improve query performance by caching sets retrieved by queries in addition to query execution plans. In this paper we report on the design of an intelligent cache manager for sets retrieved by queries called WATCHMAN, which is particularly well suited for data warehousing environment. Our cache manager employs two novel, complementary algorithms for cache replacement and for cache admission. WATCHMAN aims at minimizing query response time and its cache replacement policy swaps out entire retrieved sets of queries instead of individual pages. The cache replacement and admission algorithms make use of a profit metric, which considers for each retrieved set its average rate of reference, its size, and execution cost of the associated query. We report on a performance evaluation based on the TPC-D and Set Query benchmarks. These experiments show that WATCHMAN achieves a substantial performance improvement in a decision support environment when compared to a traditional LRU replacement algorithm.
    Keywords: Computer Operations and Hardware
    Type: NASA/CR-97-112997 , NAS 1.26:112997 , Proceedings of the VLDB Conference; Jan 01, 1996; Bombay; India
    Format: application/pdf
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