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Analysis and Optimization to an NFC Security Authentication Algorithm Based on Hash Functions

机译:基于哈希函数的NFC安全认证算法分析与优化

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Currently, NFC security authentication solutions widely use third-party authentication platforms, but their high cost and power consumption are not conducive to popularize NFC technology. To solve this problem, this paper presents a security authentication algorithm entirely based on a Hash function. It is an independent and complete algorithm without the aid of third-party certification platform. The main research process is transplanting an authentication algorithm in RFID, and then applying it to the NFC field after a wide range of optimization and improvement. This paper first changes the initiating mechanism to reduce the system error rate and save the power consumption of initiating device. Then, it removes some key data to save the storage resources. This scheme doesn't reduce the level of security. At last, the improved algorithm is simulated by Java Socket to obtain a kind of wider adaptability among devices. Experimental results from the simulation show that, the method can maintain the safety performance, improve efficiency and save storage space. It can be competent for the application in the relevant field, such as micro-payment, access controlling, etc.
机译:当前,NFC安全认证解决方案广泛使用第三方认证平台,但是其高成本和功耗不利于NFC技术的普及。为了解决这个问题,本文提出了一种完全基于哈希函数的安全认证算法。它是独立且完整的算法,无需第三方认证平台的帮助。主要研究过程是将身份验证算法移植到RFID中,然后经过广泛的优化和改进,然后将其应用于NFC领域。本文首先改变了启动机制,以降低系统错误率并节省启动设备的功耗。然后,它将删除一些关键数据以节省存储资源。此方案不会降低安全级别。最后,通过Java Socket对改进算法进行仿真,以获得一种更广泛的设备间适应性。仿真实验结果表明,该方法可以保持安全性能,提高效率,节省存储空间。它可以胜任相关领域的应用,例如小额支付,访问控制等。

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