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Perfekte Geheimhaltung im IoT: Ein hybrider kombinatorisch -boolescher Ansatz von Behrouz Zolfa
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Standort: Fairfield, Ohio, USA
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Artikelmerkmale
- Artikelzustand
- ISBN-13
- 9783031131936
- Type
- NA
- Publication Name
- NA
- ISBN
- 9783031131936
Über dieses Produkt
Product Identifiers
Publisher
Springer International Publishing A&G
ISBN-10
3031131932
ISBN-13
9783031131936
eBay Product ID (ePID)
19062750098
Product Key Features
Book Title
Perfect Secrecy in Iot : a Hybrid Combinatorial-Boolean Approach
Number of Pages
Xiii, 115 Pages
Language
English
Topic
Engineering (General), Telecommunications, Electronics / General, Cybernetics
Publication Year
2023
Illustrator
Yes
Genre
Computers, Technology & Engineering
Book Series
Signals and Communication Technology Ser.
Format
Trade Paperback
Dimensions
Item Weight
7.5 Oz
Item Length
9.3 in
Item Width
6.1 in
Additional Product Features
Dewey Edition
23
Number of Volumes
1 vol.
Dewey Decimal
005.8
Table Of Content
Introduction.- A Review on Perfect Secrecy.- Perfect Secrecy and Boolean Functions with Applications in Resource-Constrained IoT Environments.- Cryptography in IoT.- Resilient functions.- Modeling a General Cryptographic Algorithm.- Latin Squares and Cryptography.- Perfectly-Secure Encryption Modeled Using Latin Squares.- Conclusion.
Synopsis
Perfectly-secure cryptography is a branch of information-theoretic cryptography. A perfectly-secure cryptosystem guarantees that the malicious third party cannot guess anything regarding the plain text or the key, even in the case of full access to the cipher text. Despite this advantage, there are only a few real-world implementations of perfect secrecy due to some well-known limitations. Any simple, straightforward modeling can pave the way for further advancements in the implementation, especially in environments with time and resource constraints such as IoT. This book takes one step towards this goal via presenting a hybrid combinatorial-Boolean model for perfectly-secure cryptography in IoT. In this book, we first present an introduction to information-theoretic cryptography as well as perfect secrecy and its real-world implementations. Then we take a systematic approach to highlight information-theoretic cryptography as a convergence point for existing trends in research on cryptography in IoT. Then we investigate combinatorial and Boolean cryptography and show how they are seen almost everywhere in the ecosystem and the life cycle of information-theoretic IoT cryptography. We finally model perfect secrecy in IoT using Boolean functions, and map the Boolean functions to simple, well-studied combinatorial designs like Latin squares. This book is organized in two parts. The first part studie s information-theoretic cryptography and the promise it holds for cryptography in IoT. The second part separately discusses combinatorial and Boolean cryptography, and then presents the hybrid combinatorial-Boolean model for perfect secrecy in IoT.
LC Classification Number
TK5101-5105.9
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