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Lattice-Based Public-Key Cryptography in Hardware / by Sujoy Sinha Roy, Ingrid Verbauwhede

By: Contributor(s): Resource type: Ressourcentyp: Buch (Online)Book (Online)Language: English Series: Computer Architecture and Design Methodologies | Springer eBooks EngineeringPublisher: Singapore : Springer, 2020Edition: 1st ed. 2020Description: 1 Online-Ressource (XV, 101 p. 17 illus., 9 illus. in color)ISBN:
  • 9789813299948
Subject(s): Additional physical formats: 9789813299931 | Erscheint auch als: 978-981-329-993-1 Druck-AusgabeLOC classification:
  • TK7888.4
DOI: DOI: 10.1007/978-981-32-9994-8Online resources: Summary: Introduction -- Background -- Discrete Gaussian Sampling -- Ring-LWE Public Key Encryption Processor -- Modular Architecture for Somewhat Homomorphic Function Evaluation -- Recryption-Box Assisted Homomorphic Function Evaluation -- Conclusions and Future WorkSummary: This book describes the efficient implementation of public-key cryptography (PKC) to address the security challenges of massive amounts of information generated by the vast network of connected devices, ranging from tiny Radio Frequency Identification (RFID) tags to powerful desktop computers. It investigates implementation aspects of post quantum PKC and homomorphic encryption schemes whose security is based on the hardness of the ring-learning with error (LWE) problem. The work includes designing an FPGA-based accelerator to speed up computation on encrypted data in the cloud computer. It also proposes a more practical scheme that uses a special module called recryption box to assist homomorphic function evaluation, roughly 20 times faster than the implementation without this modulePPN: PPN: 1684976561Package identifier: Produktsigel: ZDB-2-ENG | ZDB-2-SEB | ZDB-2-SXE
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