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System-on-Chip Architectures and Implementations for Private-Key Data Encryption (Hardcover, 2003 ed.): Maire McLoone, John V.... System-on-Chip Architectures and Implementations for Private-Key Data Encryption (Hardcover, 2003 ed.)
Maire McLoone, John V. McCanny
R2,888 Discovery Miles 28 880 Ships in 10 - 15 working days

In System-on-Chip Architectures and Implementations for Private-Key Data Encryption, new generic silicon architectures for the DES and Rijndael symmetric key encryption algorithms are presented. The generic architectures can be utilised to rapidly and effortlessly generate system-on-chip cores, which support numerous application requirements, most importantly, different modes of operation and encryption and decryption capabilities. In addition, efficient silicon SHA-1, SHA-2 and HMAC hash algorithm architectures are described. A single-chip Internet Protocol Security (IPSec) architecture is also presented that comprises a generic Rijndael design and a highly efficient HMAC-SHA-1 implementation.

In the opinion of the authors, highly efficient hardware implementations of cryptographic algorithms are provided in this book. However, these are not hard-fast solutions. The aim of the book is to provide an excellent guide to the design and development process involved in the translation from encryption algorithm to silicon chip implementation.

Wireless Security and Cryptography - Specifications and Implementations (Hardcover): Nicolas Sklavos, Xinmiao Zhang Wireless Security and Cryptography - Specifications and Implementations (Hardcover)
Nicolas Sklavos, Xinmiao Zhang; Contributions by Odysseas Koufopavlou, Vesna Hassler, Paris Kitsos, …
R4,474 Discovery Miles 44 740 Ships in 12 - 17 working days

As the use of wireless devices becomes widespread, so does the need for strong and secure transport protocols. Even with this intensified need for securing systems, using cryptography does not seem to be a viable solution due to difficulties in implementation. The security layers of many wireless protocols use outdated encryption algorithms, which have proven unsuitable for hardware usage, particularly with handheld devices. Summarizing key issues involved in achieving desirable performance in security implementations, Wireless Security and Cryptography: Specifications and Implementations focuses on alternative integration approaches for wireless communication security. It gives an overview of the current security layer of wireless protocols and presents the performance characteristics of implementations in both software and hardware. This resource also presents efficient and novel methods to execute security schemes in wireless protocols with high performance. It provides the state of the art research trends in implementations of wireless protocol security for current and future wireless communications. Unique in its coverage of specification and implementation concerns that include hardware design techniques, Wireless Security and Cryptography: Specifications and Implementations provides thorough coverage of wireless network security and recent research directions in the field.

System-on-Chip Architectures and Implementations for Private-Key Data Encryption (Paperback, Softcover reprint of the original... System-on-Chip Architectures and Implementations for Private-Key Data Encryption (Paperback, Softcover reprint of the original 1st ed. 2003)
Maire McLoone, John V. McCanny
R2,755 Discovery Miles 27 550 Ships in 10 - 15 working days

In System-on-Chip Architectures and Implementations for Private-Key Data Encryption, new generic silicon architectures for the DES and Rijndael symmetric key encryption algorithms are presented. The generic architectures can be utilised to rapidly and effortlessly generate system-on-chip cores, which support numerous application requirements, most importantly, different modes of operation and encryption and decryption capabilities. In addition, efficient silicon SHA-1, SHA-2 and HMAC hash algorithm architectures are described. A single-chip Internet Protocol Security (IPSec) architecture is also presented that comprises a generic Rijndael design and a highly efficient HMAC-SHA-1 implementation. In the opinion of the authors, highly efficient hardware implementations of cryptographic algorithms are provided in this book. However, these are not hard-fast solutions. The aim of the book is to provide an excellent guide to the design and development process involved in the translation from encryption algorithm to silicon chip implementation.

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