首页> 外国专利> Methods, system and point-to-point encryption device microchip for AES-sea 512-bit key using identity access management utilizing blockchain ecosystem to improve cybersecurity

Methods, system and point-to-point encryption device microchip for AES-sea 512-bit key using identity access management utilizing blockchain ecosystem to improve cybersecurity

机译:利用区块链生态系统提高身份安全性,使用身份访问管理的AES-sea 512位密钥的方法,系统和点对点加密设备微芯片

摘要

A combined system and not a system separately having a complex system hardware architecture and software with levels of complexity of P2PE, IAM, and BCE. A microcontroller (MC) 64-bit using MC (A) and MC (B) embedded into a device using point-to-point encryption (P2PE) to communicate with the novel IAM blockchain software and a central server database to track all registered and non-registered IoT devices in the BCE. The present invention includes a MC 64-bit method of MC (A) and MC (B) having an advanced encryption standards (AES) strong encryption algorithm (SEA) of 512-bit key utilizing the blockchain ecosystem (BCE), IoT identity to validate transactions between the authentication, and identity of the IoT devices. The MC 64-bit of MC (A) and MC (B) employs a novel AES-SEA 512-bit key to generate a real-time randomly validation symmetrical key encryption in rounds of 10 bits, sending data into the central server and the IAM blockchain software to authenticate each device, track IoT devices, MC entries, and validations. Once the encryption AES-SEA 256-bit key is generated in the MC (A) and the encryption AES-SEA 256-bit key is generated in MC (B), the communication between the MC (A) and MC (B) will generate the AES-SEA 512-bit key with 10 bits; the pseudo-random number process is modified using a time based to be programmed with a timer which has an input of the clock frequency. The MC 64-bit of MC (A) and MC (B) is programmed in a master mode and slave mode; therein providing a novel system of circuit hardware using an AES-SEA 512-bit key and AES 2048 algorithm key to generate PKI certifications for validation, authentication, and authorization through the BCE.
机译:组合系统,而不是分别具有复杂的系统硬件体系结构和软件(具有P2PE,IAM和BCE的复杂性级别)的系统。使用MC(A)和MC(B)的64位微控制器(MC)嵌入到使用点对点加密(P2PE)的设备中,以与新型IAM区块链软件进行通信,并通过中央服务器数据库来跟踪所有已注册和已注册的BCE中未注册的IoT设备。本发明包括具有区块链生态系统(BCE),具有512位密钥的512位密钥的高级加密标准(AES)强加密算法(SEA)的MC(A)和MC(B)的MC 64位方法验证IoT设备的身份验证和身份之间的事务。 MC(A)和MC(B)的MC 64位采用新颖的AES-SEA 512位密钥,以10位为一轮生成实时随机验证对称密钥加密,将数据发送到中央服务器和IAM区块链软件可对每个设备进行身份验证,跟踪IoT设备,MC条目和验证。一旦在MC(A)中生成了AES-SEA 256位加密密钥并且在MC(B)中生成了AES-SEA 256位加密密钥,MC(A)和MC(B)之间的通信将生成具有10位的AES-SEA 512位密钥;伪随机数处理使用基于时间的时间进行修改,以使用具有时钟频率输入的计时器进行编程。 MC(A)和MC(B)的MC 64位在主模式和从模式下进行编程;其中提供了一种新颖的电路硬件系统,该系统使用AES-SEA 512位密钥和AES 2048算法密钥来生成用于通过BCE进行验证,认证和授权的PKI认证。

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