An asymmetric authentication protocol for mobile devices using elliptic curve cryptography
S. Prasanna Ganesan
Abstract
S. Prasanna Ganesan
Abstract
In recent times, the majority of e-commerce applications are designed using asymmetric cryptography to assure the authentication of the concerned parties. Conversely, an increasing requirement for mobile devices has geared a shift towards mobile e-commerce applications. This research work emphasizes that the existing authentication protocols, based on RSA asymmetric cryptography are not suitable for such devices due to their confines in computing power, memory capacity, key sizes and cryptographic support. For that reason, an efficient protocol for resource constrained platforms that attain a level of security similar to the one achieved by the protocols in use today is designed and implemented. This protocol is based solely on Elliptic curve asymmetric cryptography and the results demonstrate that the performance achieved is good in contrast to RSA.
OpenAlex reports 18 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
In recent times, the majority of e-commerce applications are designed using asymmetric cryptography to assure the authentication of the concerned parties. Conversely, an increasing requirement for mobile devices has geared a shift towards mobile e-commerce applications. This research work emphasizes that the existing authentication protocols, based on RSA asymmetric cryptography are not suitable for such devices due to their confines in computing power, memory capacity, key sizes and cryptographic support. For that reason, an efficient protocol for resource constrained platforms that attain a level of security similar to the one achieved by the protocols in use today is designed and implemented. This protocol is based solely on Elliptic curve asymmetric cryptography and the results demonstrate that the performance achieved is good in contrast to RSA.
Key concepts: Elliptic curve cryptography, Computer science, Cryptography, Authentication protocol, Authentication (law), Protocol (science), Public-key cryptography, Cryptographic protocol