Perturbation Based Privacy in Crowdsensing Perturbation Based Privacy in Crowdsensing
Wireless Networks

Perturbation Based Privacy in Crowdsensing

Zhirun Zheng and Others
    • 149,99 €
    • 149,99 €

Publisher Description

This book investigates perturbation-based privacy in crowdsensing systems. The authors first present an explicit overview of crowdsensing systems and privacy challenges and briefly discuss how the noise added by perturbation-based privacy-preserving techniques could inevitably degrade data quality and facilitate the success of data poisoning attacks on crowdsensing.

 The authors then give a comprehensive review of classical privacy notions for perturbation-based privacy-preserving techniques and theoretically analyze the relations between these privacy notions. The next four chapters conduct a series of studies on privacy preservation in crowdsensing systems from three dimensions of data privacy, data utility and data poisoning. Finally, the book explores open issues and outlines future research directions for perturbation-based privacy preservation in crowdsensing systems.

 Advanced-level students majoring in the areas of network security, computer science and electrical engineering will find this book useful as a secondary text.  Professionals seeking privacy-preserving solutions for crowdsensing systems will also find this book useful as a reference.

GENRE
Computing & Internet
RELEASED
2025
21 July
LANGUAGE
EN
English
LENGTH
190
Pages
PUBLISHER
Springer Nature Switzerland
PROVIDER INFO
Springer Science & Business Media LLC
SIZE
30.9
MB
Advanced Optical Fiber Transmission Systems Advanced Optical Fiber Transmission Systems
2026
Half-Duplex/Full-Duplex MU-mMIMO Half-Duplex/Full-Duplex MU-mMIMO
2026
Intelligent Resource Scheduling in End-Edge-Cloud Networks Intelligent Resource Scheduling in End-Edge-Cloud Networks
2026
Advanced NOMA Techniques for Heterogeneous Cellular Networks Advanced NOMA Techniques for Heterogeneous Cellular Networks
2026
Self-Evolving Digital Twin Over Wireless Networks Self-Evolving Digital Twin Over Wireless Networks
2026
Cross-Modal Communication Technology Cross-Modal Communication Technology
2025