DocumentCode
1679401
Title
MinCounter: An efficient cuckoo hashing scheme for cloud storage systems
Author
Yuanyuan Sun ; Yu Hua ; Dan Feng ; Ling Yang ; Pengfei Zuo ; Shunde Cao
Author_Institution
Sch. of Comput. Huazhong, Huazhong Univ. of Sci. & Technol., Wuhan, China
fYear
2015
Firstpage
1
Lastpage
7
Abstract
With the rapid growth of the amount of information, cloud computing servers need to process and analyze large amounts of high-dimensional and unstructured data timely and accurately, which usually requires many query operations. Due to simplicity and ease of use, cuckoo hashing schemes have been widely used in real-world cloud-related applications. However, due to the potential hash collisions, the cuckoo hashing suffers from endless loops and high insertion latency, even high risks of re-construction of entire hash table. In order to address this problem, we propose a cost-efficient cuckoo hashing scheme, called MinCounter. The idea behind MinCounter is to alleviate the occurrence of endless loops in the data insertion. MinCounter selects the “cold” (infrequently accessed) buckets to handle hash collisions rather than random buckets. MinCounter has the salient features of offering efficient insertion and query services and obtaining performance improvements in cloud servers, as well as enhancing the experiences for cloud users. We have implemented MinCounter in a large-scale cloud testbed and examined the performance by using two real-world traces. Extensive experimental results demonstrate the efficacy and efficiency of MinCounter.
Keywords
cloud computing; data handling; storage management; MinCounter; cloud computing server; cloud storage system; cuckoo hashing scheme; data insertion; Cloud computing; Complexity theory; Data structures; Dictionaries; Radiation detectors; Servers; Standards;
fLanguage
English
Publisher
ieee
Conference_Titel
Mass Storage Systems and Technologies (MSST), 2015 31st Symposium on
Conference_Location
Santa Clara, CA
Type
conf
DOI
10.1109/MSST.2015.7208292
Filename
7208292
Link To Document