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Implementation of Signcryption Scheme on E-Payment System (ePaSe)

机译:电子支付系统(EPASE)签订签订方案的实施

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A large number of startups have a big influence on increasing online transactions, especially e-payment. However, the increase in the use of e-payments posing a number of threats and resulting in a decrease level of consumer confidence in e-payment. Therefore in 2018 Daniel proposed a Signcryption scheme based on Conic Curve Cryptography which was stated to be able to fulfill forward secrecy services that could reassure consumers, but still based on mathematical calculations. In this study the implementation of the Signcryption scheme was carried out on the e-payment system on the Android platform. Implementation is done by DRM methodology and prototyping model approach. The e-payment system built consists of an e-payment application with merchant and customer actors and a bank application with bank admin actors. Based on the results of the integration testing and system testing, it was found that the e-payment system (ePaSe) built had fulfilled the design that had been done.
机译:大量启动对增加在线交易,尤其是电子支付有很大影响。然而,使用电子支付的增加造成了许多威胁,并导致消费者对电子支付的信心降低。因此,2018年,Daniel提出了一种基于锥形曲线密码学的签约方案,该方案被说明能够履行可以放心消费者的前后保密服务,但仍然基于数学计算。在这项研究中,在Android平台的电子支付系统上进行了签订签订方案的实施。实现由DRM方法和原型模型方法完成。建造的电子支付系统包括带有商家和客户行动者的电子支付申请和银行申请银行管理员。基于集成测试和系统测试的结果,发现电子支付系统(EPASE)建设已经满足了已经完成的设计。

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