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ECC-based RFID/NFC Mutual Authentication Protocol

机译:基于ECC的RFID / NFC相互认证协议

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摘要

RFID (Radio Frequency IDentification) is a generic term for technologies that use radio signals to automatically identify objects in the IoT (Internet of Things). NFC (Near Field Communication) originating from RFID is a wireless peer-to-peer communication technology, which is widely applied to mobile phones for contactless payment. The open link between the RFID tag and reader is vulnerable to various attacks, such as eavesdropping, tampering and impersonating, etc. PKC (Public Key Cryptography) based authentication is able to solve the above problem. Compared with authentication methods based on symmetric key, PKC is more secure, flexible and suitable for large-scale RFID/NFC applications due to its flexible key management and high security. However, the traditional PKC technologies are not able to be directly applied to low-cost RFID tags because of the limited computing and storage capacity of tags. To alleviate this issue, we propose a low-cost RFID authentication protocol based on ECC (Elliptic Curve Cryptography) that has high security level and small size parameters. The protocol combines the cryptoGPS identification protocol and the precomputing based Diffie-Hellman key exchange method which is proposed in this paper. The security of the protocol is analyzed and proved under the random oracle model.
机译:RFID(射频识别)是使用无线电信号自动识别物联网(物联网)的对象的技术的通用术语。源自RFID的NFC(近场通信)是一种无线对等通信技术,广泛应用于无与伦比的支付手机。 RFID标签和读取器之间的开放链路容易受到各种攻击,例如窃听,篡改和冒充等。PKC(公钥加密)基于基于问题的认证能够解决上述问题。与基于对称密钥的认证方法相比,PKC由于其灵活的关键管理和高安全性,PKC更安全,灵活,适用于大规模的RFID / NFC应用。然而,由于标签的计算和存储容量有限,传统的PKC技术无法直接应用于低成本RFID标签。为了缓解此问题,我们提出了一种基于ECC(椭圆曲线加密)的低成本RFID认证协议,具有高安全级别和小尺寸参数。该协议结合了本文提出的CryptoGPS识别协议和基于预先计算的基于示例的Diffie-Hellman密钥交换方法。分析协议的安全性并在随机的Oracle模型下证明。

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