Privately and Publicly Verifiable Computing Techniques

A Survey

Nonfiction, Computers, Advanced Computing, Theory, Database Management, Data Processing, General Computing
Cover of the book Privately and Publicly Verifiable Computing Techniques by Denise Demirel, Lucas Schabhüser, Johannes Buchmann, Springer International Publishing
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Author: Denise Demirel, Lucas Schabhüser, Johannes Buchmann ISBN: 9783319537986
Publisher: Springer International Publishing Publication: March 27, 2017
Imprint: Springer Language: English
Author: Denise Demirel, Lucas Schabhüser, Johannes Buchmann
ISBN: 9783319537986
Publisher: Springer International Publishing
Publication: March 27, 2017
Imprint: Springer
Language: English

This book presents the first comprehensive overview of various verifiable computing techniques, which allow the computation of a function on outsourced data to be delegated to a server. It provides a brief description of all the approaches and highlights the properties each solution achieves. Further, it analyzes the level of security provided, how efficient the verification process is, who can act as a verifier and check the correctness of the result, which function class the verifiable computing scheme supports, and whether privacy with respect to t he input and/or output data is provided. On the basis of this analysis the authors then compare the different approaches and outline possible directions for future work.

The book is of interest to anyone wanting to understand the state of the art of this research field.

View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart

This book presents the first comprehensive overview of various verifiable computing techniques, which allow the computation of a function on outsourced data to be delegated to a server. It provides a brief description of all the approaches and highlights the properties each solution achieves. Further, it analyzes the level of security provided, how efficient the verification process is, who can act as a verifier and check the correctness of the result, which function class the verifiable computing scheme supports, and whether privacy with respect to t he input and/or output data is provided. On the basis of this analysis the authors then compare the different approaches and outline possible directions for future work.

The book is of interest to anyone wanting to understand the state of the art of this research field.

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