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FPGA IMPLEMENTATION OF MODIFIED ELLIPTIC CURVE DIGITAL SIGNATURE ALGORITHM

机译:改进的椭圆曲线数字签名算法的FPGA实现

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With rapid deployment of Internet-of-Things (IoT) devices, security issues related to data transmitted between the devices increases. Thus the integrity of perceptual layer devices is of utmost importance to secure the information being transmitted between the devices. In a secured information system, digital signature generation and verification processes are entirely different from data encryption and decryption processes. Digital signatures are rapidly emerging due to the problems related to data integrity thus playing a crucial role in the authentication process by enabling the sender to attach a signature to the encrypted message. Based on the devices it is bene?cial to select an ?algorithm showing favorable behavior, therefore Keccak-f [1600] algorithm is best suited for devices having area and cost constraints. In this paper, implementation of the original Elliptic Curve Digital Signature Algorithm and its variants are considered and evaluated in terms of the security level and computational cost. Here the modified ECDSA scheme concepts related to signature generation and verification are similar to the original ECDSA scheme. The computational cost of the Modified ECDSA is reduced by removing inverse operation in key generation and signing phase, also problems related to signature being forged are resolved using hidden generator point concept. Hence the Modified ECDSA is more secure with less computational cost when implemented on FPGA using Verilog HDL. Therefore, this algorithm can be applied for the devices being connected in perceptual layer of the IoT.
机译:随着物联网(IoT)设备的快速部署,与设备之间传输的数据相关的安全性问题日益严重。因此,感知层设备的完整性对于确保在设备之间传输的信息至关重要。在安全信息系统中,数字签名的生成和验证过程与数据加密和解密过程完全不同。由于与数据完整性有关的问题,数字签名正在迅速出现,因此通过使发送者能够将签名附加到加密的消息上,从而在身份验证过程中发挥了至关重要的作用。基于这些设备,最好选择一个表现出良好行为的算法,因此Keccak-f [1600]算法最适合于具有面积和成本约束的设备。在本文中,从安全级别和计算成本的角度考虑和评估了原始椭圆曲线数字签名算法的实现及其变体。在这里,与签名生成和验证有关的修改后的ECDSA方案概念与原始ECDSA方案相似。通过消除密钥生成和签名阶段中的逆运算,可以减少Modified ECDSA的计算成本,并使用隐藏的生成器点概念解决了与伪造签名有关的问题。因此,当使用Verilog HDL在FPGA上实施时,修改后的ECDSA更加安全,计算成本更低。因此,该算法可以应用于在物联网感知层中连接的设备。

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