论文标题

物联网保护和加密:调查

Internet of Things Protection and Encryption: A Survey

论文作者

Samara, Ghassan, Quaddoura, Ruzayn, Al-Shalout, Mooad Imad, Khaled, AL-Qawasmi, Besani, Ghadeer Al

论文摘要

物联网(物联网)使各种各样的部门能够与消费者有效互动,以提供无缝的服务和产品。尽管(IoT)设备及其Internet连接的广泛可用性,但它们的信息安全性完整性水平较低。在我们的研究中提出并评估了许多安全方法,并根据加密和解密过程中的能量和时间进行了比较。在主管理器中的设备上还执行了批准程序,该设备被视为IoT设备的完整防火墙。建议使用低成本的Adriano Uno和Raspberry Pi设备显示了建议的算法的成功。艰苦的UNO已被用来使用多种算法来证明低能设备中的加密过程,包括增强的数据完整性和身份验证算法(EDAI)和Raspberry,该算法是低能设备分子的安全管理器。与区块链软件结合使用的各种增强算法也确保了信息的安全性和完整性。这些发现和讨论在本文的结论中提出。

The Internet of Things (IoT) has enabled a wide range of sectors to interact effectively with their consumers in order to deliver seamless services and products. Despite the widespread availability of (IoT) devices and their Internet connectivity, they have a low level of information security integrity. A number of security methods were proposed and evaluated in our research, and comparisons were made in terms of energy and time in the encryption and decryption processes. A ratification procedure is also performed on the devices in the main manager, which is regarded as a full firewall for IoT devices. The suggested algorithm's success has been shown utilizing low-cost Adriano Uno and Raspberry Pi devices. Arduous Uno has been used to demonstrate the encryption process in low-energy devices using a variety of algorithms, including Enhanced Algorithm for Data Integrity and Authentication (EDAI) and raspberry, which serves as a safety manager in low-energy device molecules. A variety of enhanced algorithms used in conjunction with Blockchain software have also assured the security and integrity of the information. These findings and discussions are presented at the conclusion of the paper.

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