Fuzzy controlling window for elliptic curve cryptography in wireless networks
Xu Guang Huang, Dharmendra Kumar Sharma · 2010
The rapidly developing wireless communications and embedded micro-electro systems has made wireless sensor networks (WSN) possible for extensive applications. However, the security of the WSN becomes one of the major concerns in those applications. Elliptic curve cryptography (ECC) prominently provides solid potential for WSN security with its small key size and its high security strength. However, in order to satisfy the full range of applications there is an urgent need to reduce key calculation time. Due to scalar multiplication operation in ECC takes about 80% of key calculation time on WSN, this paper we proposed a fuzzy controller for a dynamic window allowing the calculation processing to run under optimum conditions with the balanced for RAM and ROM at the sensor node within WSN. The whole quality of Service (QoS) is improved, in particular the power consuming is more efficiently. The simulation results showed that the average calculation time decreased by approximately 15% in comparison to traditional algorithms in an ECC WSN.