DocumentCode :
654827
Title :
A Fast (2, 2^m)-Threshold Secret Sharing Scheme Using m Linearly Independent Binary Vectors
Author :
Suga, Yuji
Author_Institution :
Internet Initiative Japan Inc., Japan
fYear :
2013
fDate :
4-6 Sept. 2013
Firstpage :
539
Lastpage :
544
Abstract :
Fast (k, n)-threshold secret sharing schemes with exclusive-OR operations have proposed by Kurihara et al. and Fujii et al. independently. Their method are ideal that share size is equal to the size of the data to be distributed with the benefits that can be handled very fast for using only XOR operation at distribution and restoration processes. In these cases for the number of shares n, target data must be equally divided into individual np-1 pieces where np is a prime more than n.The existing methods described above are configured using the cyclic matrices with prime order. On the other hand, a new method in WAIS2013 have proposed, this leads to general constructions of (2, p + 1)-threshold secret sharing schemes.In this paper, we use m-dimensional vector spaces over Z2 on having bases that meet certain conditions in order to construct proposed methods. This paper defines a new notion "2-propagation bases set" as a bases set to be used in the configuration. In order to guarantee the existence of (2; 2m)- threshold secret sharing schemes, we also treat the presence of the m-dimensional bases.
Keywords :
private key cryptography; set theory; vectors; (2, 2m)-threshold secret sharing scheme; 2-propagation base set; XOR operation; data restoration process; distributed data size; exclusive-OR operations; linearly independent binary vectors; m-dimensional bases; m-dimensional vector spaces; Availability; Ciphers; Cloud computing; Decoding; Encryption; Vectors; secret sharing schemes; cloud computing;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Network-Based Information Systems (NBiS), 2013 16th International Conference on
Conference_Location :
Gwangju
Print_ISBN :
978-1-4799-2509-4
Type :
conf
DOI :
10.1109/NBiS.2013.90
Filename :
6685458
Link To Document :
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