DocumentCode :
705794
Title :
Energy-efficient privacy homomorphic encryption scheme for multi-sensor data in WSNs
Author :
Verma, Suraj ; Pillai, Prashant ; Yim Fun Hu
Author_Institution :
Fac. of Eng. & Inf., Univ. of Bradford, Bradford, UK
fYear :
2015
fDate :
6-10 Jan. 2015
Firstpage :
1
Lastpage :
6
Abstract :
The recent advancements in wireless sensor hardware ensures sensing multiple sensor data such as temperature, pressure, humidity, etc. using a single hardware unit, thus defining it as multi-sensor data communication in wireless sensor networks (WSNs). The in-processing technique of data aggregation is crucial in energy-efficient WSNs; however, with the requirement of end-to-end data confidentiality it may prove to be a challenge. End-to-end data confidentiality along with data aggregation is possible with the implementation of a special type of encryption scheme called privacy homomorphic (PH) encryption schemes. This paper proposes an optimized PH encryption scheme for WSN integrated networks handling multi-sensor data. The proposed scheme ensures light-weight payloads, significant energy and bandwidth consumption along with lower latencies. The performance analysis of the proposed scheme is presented in this paper with respect to the existing scheme. The working principle of the multi-sensor data framework is also presented in this paper along with the appropriate packet structures and process. It can be concluded that the scheme proves to decrease the payload size by 56.86% and spend an average energy of 8-18 mJ at the aggregator node for sensor nodes varying from 10-50 thereby ensuring scalability of the WSN unlike the existing scheme.
Keywords :
cryptography; data privacy; telecommunication computing; telecommunication network reliability; wireless sensor networks; PH encryption schemes; WSN scalability; aggregator node; bandwidth consumption; data aggregation; end-to-end data confidentiality; energy 8 mJ to 18 mJ; energy consumption; energy-efficient privacy homomorphic encryption scheme; humidity; in-processing technique; light-weight payloads; multisensor data communication; packet structures; performance analysis; pressure; sensor nodes; single hardware unit; temperature; wireless sensor networks; Bandwidth; Cryptography; Informatics; Tin; Wireless sensor networks; contiki-OS; data aggregation; end-to-end data confidentiality; energy-efficient WSNs; homomorphic encryption scheme; wireless sensor networks;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Communication Systems and Networks (COMSNETS), 2015 7th International Conference on
Conference_Location :
Bangalore
Type :
conf
DOI :
10.1109/COMSNETS.2015.7098719
Filename :
7098719
Link To Document :
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