Nothing Special   »   [go: up one dir, main page]

skip to main content
10.1109/GLOBECOM46510.2021.9685632guideproceedingsArticle/Chapter ViewAbstractPublication PagesConference Proceedingsacm-pubtype
research-article

Secure Data Sharing in UAV-assisted Crowdsensing: Integration of Blockchain and Reputation Incentive

Published: 07 December 2021 Publication History

Abstract

Unmanned aerial vehicles (UAVs) combining with crowdsensing technology has been viewed as a promising paradigm for performing sensing tasks in extreme scenarios such as earthquakes, etc. However, potential security issues could incur on data sharing between UAVs and task publishers owing to the vulnerability of central nodes and selfishness of distrusted UAVs. To cope with these problems, we propose a novel blockchain-based crowdsensing framework with reputation incentive (BCFR) in UAV-assisted mobile crowdsensing. Specifically, we first propose a novel reputation incentive scheme to choose UAVs with a high reputation to perform sensing tasks, thereby protecting data sharing between UAVs and task publishers from internal attack (i.e., some UAVs with insufficient resources may turn into malicious UAVs to provide wrong sensory data to the task publishers). Then, we design a blockchain-based secure data transmission scheme to securely record data transactions of UAVs. Furthermore, since UAVs with limited resources are difficult to perform compute-intensive mining tasks, edge computing is incorporated to increase the success probability of block creation. The interactions between UAVs and edge computing provider (ECP) are modeled as a two-stage Stackelberg game to motivate UAVs participating in the block creation process while providing high-quality services. Finally, we conduct extensive simulations to demonstrate that the proposed BCFR scheme can effectively improve successful mining probabilities and utilities of UAVs, and ensure the security of data sharing among UAVs and task publishers.

References

[1]
Y. Wang, Z. Su, N. Zhang, and A. Benslimane, “Learning in the Air: Secure Federated Learning for UAV-Assisted Crowdsensing,” IEEE Transactions on Network Science and Engineering.
[2]
L. Li, D. Shi, X. Zhang, R. Hou, H. Yue, H. Li, and M. Pan, “Privacy Preserving Participant Recruitment for Coverage Maximization in Location Aware Mobile Crowdsensing,” IEEE Transactions on Mobile Computing.
[3]
Y. Li, F. Li, S. Yang, P. Zhou, L. Zhu and Y. Wang, “Three-stage Stackelberg Long-term Incentive Mechanism and Monetization for Mobile Crowdsensing: An Online Learning Approach,” IEEE Transactions on Network Science and Engineering.
[4]
Z. Su, Y. Wang, Q. Xu and N. Zhang, “LVBS: Lightweight Vehicular Blockchain for Secure Data Sharing in Disaster Rescue,” IEEE Transactions on Dependable and Secure Computing.
[5]
C. H. Liu, C. Piao and J. Tang, “Energy-Efficient UAV Crowdsensing with Multiple Charging Stations by Deep Learning,” IEEE INFOCOM 2020 - IEEE Conference on Computer Communications, Toronto, ON, Canada, 2020, pp. 199–208.
[6]
Z. Zhou, J. Feng, B. Gu, B. Ai, S. Mumtaz, J. Rodriguez and M. Guizani, “When Mobile Crowd Sensing Meets UAV: Energy-Efficient Task Assignment and Route Planning,” IEEE Transactions on Communications, vol. 66, no. 11, pp. 5526–5538, Nov. 2018.
[7]
Y. Zhou, C. Pan, P. Yeoh, K. Wang, M. Elkashlan, B. Vucetic and Y. Li, “Secure Communications for UAV-Enabled Mobile Edge Computing Systems,” IEEE Transactions on Communications, vol. 68, no. 1, pp. 376–388, Jan. 2020.
[8]
L. Jiang, B. Chen, S. Xie, S. Maharjan and Y. Zhang, “Incentivizing Resource Cooperation for Blockchain Empowered Wireless Power Transfer in UAV Networks,” IEEE Transactions on Vehicular Technology, vol. 69, no. 12, pp. 15828–15841, Dec. 2020.
[9]
H. Xu, W. Huang, Y. Zhou, D. Yang, M. Li and Z. Han, “Edge Computing Resource Allocation for Unmanned Aerial Vehicle Assisted Mobile Network with Blockchain Applications,” IEEE Transactions on Wireless Communications.
[10]
K. Gai, Y. Wu, L. Zhu, K. R. Choo and B. Xiao, “Blockchain-Enabled Trustworthy Group Communications in UAV Networks,” IEEE Transactions on Intelligent Transportation Systems.
[11]
Z. Su, M. Dai, Q. Qi, Y. Wang, Q. Xu and Q. Yang, “Task Allocation Scheme for Cyber Physical Social Systems,” IEEE Transactions on Network Science and Engineering, vol. 7, no. 2, pp. 832–842, 1 April–June 2020.
[12]
G. Zhang, Q. Wu, M. Cui and R. Zhang, “Securing UAV Communications via Joint Trajectory and Power Control,” IEEE Transactions on Wireless Communications, vol. 18, no. 2, pp. 1376–1389, Feb. 2019.
[13]
J. Kang, R. Yu, X. Huang, S. Maharjan, Y. Zhang and E. Hossain, “Enabling Localized Peer-to-Peer Electricity Trading Among Plug-in Hybrid Electric Vehicles Using Consortium Blockchains,” IEEE Transactions on Industrial Informatics, vol. 13, no. 6, pp. 3154–3164, Dec. 2017.
[14]
J. Qiu, D. Grace, G. Ding, J. Yao and Q. Wu, “Blockchain-Based Secure Spectrum Trading for Unmanned-Aerial-Vehicle-Assisted Cellular Networks: An Operators Perspective,” IEEE Internet of Things Journal, vol. 7, no. 1, pp. 451–466, Jan. 2020.
[15]
J. Kang, Z. Xiong, D. Niyato, D. Ye, D. I. Kim and J. Zhao, “Toward Secure Blockchain-Enabled Internet of Vehicles: Optimizing Consensus Management Using Reputation and Contract Theory,” IEEE Transactions on Vehicular Technology, vol. 68, no. 3, pp. 2906–2920, March 2019.
[16]
Q. Xu, Z. Su and R. Lu, “Game Theory and Reinforcement Learning Based Secure Edge Caching in Mobile Social Networks,” IEEE Transactions on Information Forensics and Security, vol. 15, pp. 3415–3429, 2020.
[17]
S. Guo, Y. Dai, S. Guo, X. Qiu and F. Qi, “Blockchain Meets Edge Computing: Stackelberg Game and Double Auction Based Task Offloading for Mobile Blockchain,” IEEE Transactions on Vehicular Technology, vol. 69, no. 5, pp. 5549–5561, May 2020.

Cited By

View all
  • (2024)A Survey on Security of UAV Swarm Networks: Attacks and CountermeasuresACM Computing Surveys10.1145/370362557:3(1-37)Online publication date: 22-Nov-2024
  • (2024)Secure UAV (Drone) and the Great Promise of AIACM Computing Surveys10.1145/367322556:11(1-37)Online publication date: 9-Jul-2024

Index Terms

  1. Secure Data Sharing in UAV-assisted Crowdsensing: Integration of Blockchain and Reputation Incentive
          Index terms have been assigned to the content through auto-classification.

          Recommendations

          Comments

          Please enable JavaScript to view thecomments powered by Disqus.

          Information & Contributors

          Information

          Published In

          cover image Guide Proceedings
          2021 IEEE Global Communications Conference (GLOBECOM)
          Dec 2021
          3571 pages

          Publisher

          IEEE Press

          Publication History

          Published: 07 December 2021

          Qualifiers

          • Research-article

          Contributors

          Other Metrics

          Bibliometrics & Citations

          Bibliometrics

          Article Metrics

          • Downloads (Last 12 months)0
          • Downloads (Last 6 weeks)0
          Reflects downloads up to 09 Feb 2025

          Other Metrics

          Citations

          Cited By

          View all
          • (2024)A Survey on Security of UAV Swarm Networks: Attacks and CountermeasuresACM Computing Surveys10.1145/370362557:3(1-37)Online publication date: 22-Nov-2024
          • (2024)Secure UAV (Drone) and the Great Promise of AIACM Computing Surveys10.1145/367322556:11(1-37)Online publication date: 9-Jul-2024

          View Options

          View options

          Figures

          Tables

          Media

          Share

          Share

          Share this Publication link

          Share on social media