Security engineering : a guide to building dependable distributed systems / Ross Anderson.
2020
QA76.9.A25
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Details
Title
Security engineering : a guide to building dependable distributed systems / Ross Anderson.
Author
Edition
Third edition
ISBN
9781119644682 (electronic bk.)
1119644682 (electronic bk.)
9781119642787 (print)
9781119642817 (electronic book)
1119642817 (electronic book)
9781119642831 (electronic book)
1119642833 (electronic book)
1119642787
1119644682 (electronic bk.)
9781119642787 (print)
9781119642817 (electronic book)
1119642817 (electronic book)
9781119642831 (electronic book)
1119642833 (electronic book)
1119642787
Published
Indianapolis : John Wiley & Sons Inc, [2020]
Copyright
©2020
Language
English
Description
1 online resource (1232 pages) : illustrations
Other Standard Identifiers
10.1002/9781119644682 doi
Call Number
QA76.9.A25
System Control No.
(OCoLC)1226521073
Summary
In Security Engineering: A Guide to Building Dependable Distributed Systems, Third Edition Cambridge University professor Ross Anderson updates his classic textbook and teaches readers how to design, implement, and test systems to withstand both error and attack. This book became a best-seller in 2001 and helped establish the discipline of security engineering. By the second edition in 2008, underground dark markets had let the bad guys specialize and scale up; attacks were increasingly on users rather than on technology. The book repeated its success by showing how security engineers can focus on usability. Now the third edition brings it up to date for 2020. As people now go online from phones more than laptops, most servers are in the cloud, online advertising drives the Internet and social networks have taken over much human interaction, many patterns of crime and abuse are the same, but the methods have evolved. Ross Anderson explores what security engineering means in 2020. The third edition of Security Engineering ends with a grand challenge: sustainable security. As we build ever more software and connectivity into safety-critical durable goods like cars and medical devices, how do we design systems we can maintain and defend for decades? Or will everything in the world need monthly software upgrades, and become unsafe once they stop?
Note
Includes index.
Bibliography, etc. Note
Includes bibliographical references and index.
Formatted Contents Note
What is security engineering?
Who is the opponent?
Psychology and usability
Protocols
Cryptography
Access control
Distributed systems
Economics
Multilevel security
Boundaries
Inference control
Banking and bookkeeping
Locks and alarms
Monitoring and metering
Nuclear command and control
Security printing and seals
Biometrics
Tamper resistance
Side channels
Advanced cyptographic engineering
Network attack and defence
Phones
Electronic and information warfare
Copyright and DRM
New directions?
Surveillance or Privacy?
Secure systems development
Assurance and sustainability
Beyond "computer says no"
Who is the opponent?
Psychology and usability
Protocols
Cryptography
Access control
Distributed systems
Economics
Multilevel security
Boundaries
Inference control
Banking and bookkeeping
Locks and alarms
Monitoring and metering
Nuclear command and control
Security printing and seals
Biometrics
Tamper resistance
Side channels
Advanced cyptographic engineering
Network attack and defence
Phones
Electronic and information warfare
Copyright and DRM
New directions?
Surveillance or Privacy?
Secure systems development
Assurance and sustainability
Beyond "computer says no"
Available in Other Form
Print version: Anderson, Ross, 1956- Security engineering. Third edition. Indianapolis, Indiana : John Wiley & Sons, Inc., [2020]
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