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Durable and Energy Efficient In-Memory Frequent-Pattern Mining

机译:持久且节能的内存中频繁模式挖掘

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It is a significant problem to efficiently identify the frequently occurring patterns in a given dataset, so as to unveil the trends hidden behind the dataset. This paper is motivated by the serious demands of a high-performance in-memory frequent-pattern mining strategy, with joint optimization over the mining performance and system durability. While the widely used frequent-pattern tree (FP-tree) serves as an efficient approach for frequent-pattern mining, its construction procedure often makes it unfriendly for nonvolatile memories (NVMs). In particular, the incremental construction of FP-tree could generate many unnecessary writes to the NVM and greatly degrade the energy efficiency, because NVM writes typically take more time and energy than reads. To overcome the drawbacks of FP-tree on NVMs, this paper proposes evergreen FP-tree (EvFP-tree), which includes a lazy counter and a minimum-bit-altered (MBA) encoding scheme to make FP-tree friendly for NVMs. The basic idea of the lazy counter is to greatly eliminate the redundant writes generated in FP-tree construction. On the other hand, the MBA encoding scheme is to complement existing wear-leveling techniques to evenly write each memory cell to extend the NVM lifetime. As verified by experiments, EvFP-tree greatly enhances the mining performance and system lifetime by 40.28% and 87.20% on average, respectively. And EvFP-tree reduces the energy consumption by 50.30% on average.
机译:有效识别给定数据集中经常发生的模式,以揭示隐藏在数据集中的趋势是一个重大问题。本文是出于对高性能内存中频繁模式挖掘策略的迫切需求而制定的,同时对挖掘性能和系统耐久性进行了联合优化。尽管广泛使用的频繁模式树(FP-tree)是频繁模式挖掘的一种有效方法,但其构造过程经常使它对非易失性存储器(NVM)不友好。特别是,FP-tree的增量构造可能会对NVM产生许多不必要的写入,并大大降低能源效率,因为NVM写入通常比读取花费更多的时间和精力。为了克服FP-tree在NVM上的弊端,本文提出了常绿FP-tree(EvFP-tree),其中包括一个惰性计数器和一个最小位更改(MBA)编码方案,以使FP-tree对NVM友好。惰性计数器的基本思想是极大地消除FP树构造中生成的冗余写入。另一方面,MBA编码方案是对现有损耗均衡技术的补充,以均匀地写入每个存储单元以延长NVM寿命。实验证明,EvFP-tree分别将采矿性能和系统寿命平均分别提高了40.28%和87.20%。而EvFP-tree则平均降低了50.30%的能耗。

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