Academic literature on the topic 'Symmetric self-encryption devices'

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Journal articles on the topic "Symmetric self-encryption devices"

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Kuo-Tsang, Huang, Chiu Jung-Hui, and Shen Sung-Shiou. "A NOVEL STRUCTURE WITH DYNAMIC OPERATION MODE FOR SYMMETRIC-KEY BLOCK CIPHERS." International Journal of Network Security & Its Applications (IJNSA) 5, no. 1 (2013): 17–36. https://doi.org/10.5281/zenodo.3786423.

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Modern Internet protocols support several modes of operation in encryption tasks for data confidentiality to keep up with varied environments and provide the various choices, such as multi-mode IPSec support. To begin with we will provide a brief background on the modes of operation for symmetric-key block ciphers. Different block cipher modes of operation have distinct characteristics. For example, the cipher block chaining (CBC) mode is suitable for operating environments that require self-synchronizing capabilities, and the output feedback (OFB) mode requires encryption modules only. When using symmetric-key block cipher algorithms such as the Advanced Encryption Standard (AES), users performing information encryption often encounter difficulties selecting a suitable mode of operation. This paper describes a structure for analyzing the block operation mode combination. This unified operation structure (UOS) combines existing common and popular block modes of operation. UOS does multi-mode of operation with most existing popular symmetric-key block ciphers and do not only consist of encryption mode such as electronic codebook (ECB) mode, cipher block chaining (CBC) mode, cipher feedback (CFB) mode and output feedback (OFB) mode, that provides confidentiality but also message authentication mode such as the cipher block chaining message authentication code (CBC-MAC) in cryptography. In Cloud Computing, information exchange frequently via the Internet and on-demand. This research provides an overview and information useful for approaching low-resource hardware implementation, which is proper to ubiquitous computing devices such as a sensor mote or an RFID tag. The use of the method is discussed and an example is given. This provides a common solution for multimode and this is very suitable for ubiquitous computing with several resources and environments. This study indicates a more effectively organized structure for symmetric-key block ciphers to improve their application scenarios. We can get that it is flexible in modern communication applications.
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An, Yang, Yuejiao Zhang, Wenjun Cao, Zhiyan Tong, and Zhangqing He. "A Lightweight and Practical Anonymous Authentication Protocol Based on Bit-Self-Test PUF." Electronics 11, no. 5 (2022): 772. http://dx.doi.org/10.3390/electronics11050772.

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Physical unclonable function (PUF), a cryptographic primitive, has recently been used in protocol design because it can ensure a tamper-evident feature. In many PUF-based protocol schemes, helper data algorithms (HDA) or fuzzy extractors (FE) are used to generate strong keys from unreliable PUF responses. However, these methods inevitably introduce complex error correction techniques, which not only increase the overhead of embedded devices but also pose some security risks. We propose a novel HDA technology, which does not use any high-overhead error correction mechanism, greatly reducing the implementation complexity and execution overhead. The novel HDA exploits the strategy of bit-self-test (BST) and the PUF can extract the robust responses by using the real-time generated reliable flags, and then an entropy extractor is used to generate the reliable and random key with high entropy. Based on this novel HDA, we design a lightweight anonymous authentication protocol. The protocol uses pseudo-random function (PRF) and XOR operation instead of the traditional hash function and symmetric encryption algorithm, which ensures security while reducing the overhead. Moreover, the proposed protocol does not require the server to store a large number of challenge–response pairs (CRPs), which reduces the storage overhead on the server while avoiding the risk of leakage of CRPs. Moreover, the device identity ID is updated during each round of the authentication process, which prevents the device from being tracked and protects the privacy of the device. The implementation and performance analysis of the protocol prototype on a Zynq-7000 SoC XC7Z010 FPGA shows that the proposed scheme solves the problems encountered with existing schemes and has additional security properties.
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Biran, Yahav, George Collins, Borky John M, and Joel Dubow. "Volume 2, Issue 3, Special issue on Recent Advances in Engineering Systems (Published Papers) Articles Transmit / Received Beamforming for Frequency Diverse Array with Symmetrical frequency offsets Shaddrack Yaw Nusenu Adv. Sci. Technol. Eng. Syst. J. 2(3), 1-6 (2017); View Description Detailed Analysis of Amplitude and Slope Diffraction Coefficients for knife-edge structure in S-UTD-CH Model Eray Arik, Mehmet Baris Tabakcioglu Adv. Sci. Technol. Eng. Syst. J. 2(3), 7-11 (2017); View Description Applications of Case Based Organizational Memory Supported by the PAbMM Architecture Martín, María de los Ángeles, Diván, Mario José Adv. Sci. Technol. Eng. Syst. J. 2(3), 12-23 (2017); View Description Low Probability of Interception Beampattern Using Frequency Diverse Array Antenna Shaddrack Yaw Nusenu Adv. Sci. Technol. Eng. Syst. 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Maen, M. Al Assaf, Qatawneh Mohammad, and AlRadhi AlaaAldin. "Linear algorithm for data retrieval performance optimization in self-encryption hybrid data centers." May 19, 2025. https://doi.org/10.11591/eei.v14i3.9320.

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Contemporary data centers implement hybrid storage systems that consist of layers from solid-state drives (SSDs) and hard disk drives (HDDs). Due to their high data retrieval speed, SSDs layer is used to store important data blocks that have features like high frequency of access. To boost their security level, many of such systems implement self-encryption algorithms like advanced encryption standard (AES), Blowfish, and triple data encryption standard (3DES) with different key sizes that vary in their complexity and their decryption latency whenever a block is requested for read. Frequently accessed data blocks with increased decryption latencies are better to be migrated to the SSDs layer to decrease their retrieval latency. In this paper, we introduce a linear complexity algorithm hybrid self-encryption storage data migration (HSESM) that migrates important data blocks that requires long decryption latencies from the HDDs layer to the SSDs one. Performance evaluation shows that HSESM data migration process can reduce data blocks read latencies in 13.71%-23.61% under worst-case scenarios.
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Messai, Mohamed‐Lamine. "AdaPtive and rObust Key pre‐distribution for multi‐phase IoT networks." International Journal of Communication Systems, May 17, 2024. http://dx.doi.org/10.1002/dac.5824.

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SummaryInternet of Things (IoT) networks continue to be deployed and play a crucial role in our daily life. Thus, ensuring their security is of utmost importance. This necessitates the use of cryptographic materials to maintain the confidentiality of exchanged data between IoT devices (or sensor nodes). The key component of these cryptographic materials is the encryption and decryption keys. In resource‐constrained networks like sensor and IoT networks, employing symmetric pairwise keys offers a trade‐off between resource saving and security. However, symmetric cryptosystems suffer from node compromising attacks. In addition, such networks often require the post‐deployment of new IoT devices either periodically or based on specific use cases leading to a multi‐phase IoT networks. So, key establishment is required to secure newly added node communications. This paper presents an adaPtive and rObust Key pre‐distribution (POK) that enables key establishment between deployed nodes. POK enhances the generation and pre‐loading of keys in sensor nodes. The fundamental concept of POK involves pre‐loading newly added IoT or sensor nodes with pairwise keys computed using a hash function and taking into account the expected number of future post‐deployments. Through a comparative analysis with related works, POK minimizes communication overhead, eliminates the need for time synchronization, and offers an energy‐efficient scheme. Furthermore, POK offers a resilience to node compromising attack by the self‐healing property, where compromised nodes have a limited effect on the network, and newly deployed nodes remain unaffected.
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