Skip to main content

Advertisement

Log in

RETRACTED ARTICLE: E-Health Cloud Security Using Timing Enabled Proxy Re-Encryption

  • Published:
Mobile Networks and Applications Aims and scope Submit manuscript

This article was retracted on 07 November 2022

This article has been updated

Abstract

In the present era of Information Technology, almost all big and small scale companies are moving towards cloud to store and manage the data. Cloud computing is a routine of deploying a structure of distant servers speed up on the Internet to store, oversee, and manage information, rather than a neighbourhood server or a PC. The purpose for cloud procurement is reduced cost, adaptability, regular access and refreshed programming. Nowadays, healthcare frameworks are adjusting computerized stages and ending up being more patient-centered and data driven. In this paper, we present a planning empowered intermediary re-encryption method to defeat the security issues. This Technique will allow only limited access rights to an authorized agent to access the records for a specific time period. This technique will use a searchable encryption and proxy Re-encryption technique.

This is a preview of subscription content, log in via an institution to check access.

Access this article

Price excludes VAT (USA)
Tax calculation will be finalised during checkout.

Instant access to the full article PDF.

Fig. 1
Fig. 2
Fig. 3
Fig. 4
Fig. 5
Fig. 6
Fig. 7
Fig. 8

Similar content being viewed by others

Change history

References

  1. K. Olszewska (2014) The future of IT in the healthcare industry from an IT decision maker perspective,http://www.frost.com/sublib/displayreport.do?id=M9D3-01-00-00-00, last accessed: March 29, 2016

  2. Varatharajan R, Manogaran G, Priyan MK (2017). A big data classification approach using LDA with an enhanced SVM method for ECG signals in cloud computing. Multimedia Tools and Applications, 1–21

  3. Manogaran G, Varatharajan R, Lopez D, Kumar PM, Sundarasekar R, Thota C (2017). A new architecture of Internet of Things and big data ecosystem for secured smart healthcare monitoring and alerting. Future Generation Computer Systems

  4. Thota C, Sundarasekar R, Manogaran G, Varatharajan R., Priyan MK (2018). Centralized Fog Computing Security Platform for IoT and Cloud in Healthcare System. In Exploring the Convergence of Big Data and the Internet of Things (pp. 141–154). IGI Global

  5. Manogaran G, Vijayakumar V, Varatharajan R, Kumar PM, Sundarasekar R, Hsu CH Machine Learning Based Big Data Processing Framework for Cancer Diagnosis Using Hidden Markov Model and GM Clustering. Wireless Personal Communications, 1–18

  6. Suresh A, Varatharajan R (2017) Competent resource provisioning and distribution techniques for cloud computing environment. Cluster Computing, 1–8

  7. Manogaran, G., Lopez, D., Thota, C., Abbas, K. M., Pyne, S., & Sundarasekar, R. (2017). Big data analytics in healthcare internet of things. In Innovative Healthcare Systems for the 21st Century (pp. 263-284). Springer international publishing

  8. Manogaran G, Lopez D (2017) A survey of big data architectures and machine learning algorithms in healthcare. Int J Biomed Eng Technol 25(2–4):182–211

    Article  Google Scholar 

  9. Manogaran G, Thota C, Lopez D (2018) Human-computer interaction with big data analytics. In HCI Challenges and Privacy Preservation in Big Data Security (pp. 1–22). IGI Global

  10. Kumar PM, Gandhi U, Varatharajan R, Manogaran G, Jidhesh R, Vadivel T (2017). Intelligent face recognition and navigation system using neural learning for smart security in Internet of Things. Cluster Computing, 1–12

  11. Lopez D, Manogaran G (2017) Parametric Model to Predict H1N1 Influenza in Vellore District, Tamil Nadu, India. In Handbook of Statistics (Vol. 37, pp. 301–316). Elsevier

  12. Manogaran G, Varatharajan R, Priyan MK (2017) Hybrid Recommendation System for Heart Disease Diagnosis based on Multiple Kernel Learning with Adaptive Neuro-Fuzzy Inference System. Multimedia Tools and Applications, 1–21

  13. Varatharajan R, Manogaran G, Priyan MK, Balaş VE, Barna C (2017) Visual analysis of geospatial habitat suitability model based on inverse distance weighting with paired comparison analysis. Multimedia Tools and Applications, 1–21

  14. Varatharajan R, Vasanth K, Gunasekaran M, Priyan M, Gao XZ (2017). An adaptive decision based kriging interpolation algorithm for the removal of high density salt and pepper noise in images. Computers & Electrical Engineering

  15. Varatharajan R, Manogaran G, Priyan MK, Sundarasekar R (2017) Wearable sensor devices for early detection of Alzheimer disease using dynamic time warping algorithm. Cluster Computing, 1–10

  16. Lopez D, Manogaran G (2016) Big Data Architecture for Climate Change and Disease Dynamics, Eds. Geetam S. Tomar et al. The Human Element of Big Data: Issues, Analytics, and Performance, CRC Press

  17. Manogaran G, Lopez D (2017) Disease surveillance system for big climate data processing and dengue transmission. Int J Ambient Comput Int 8(2):1–25

    Google Scholar 

  18. Manogaran G, Lopez D (2017) Spatial cumulative sum algorithm with big data analytics for climate change detection. Computers & Electrical Engineering

  19. Manogaran G, Lopez D (2017) A Gaussian process based big data processing framework in cluster computing environment. Cluster Computing, 1–16

  20. Lopez D, Manogaran G, Jagan J (2017) Modelling the H1N1 influenza using mathematical and neural network approaches. Biomed Res 28(8):1–5

    Google Scholar 

  21. Lopez D, Gunasekaran M, Murugan BS, Kaur H, Abbas KM (2014) “Spatial BigData analytics of influenza epidemic in Vellore, India,” in Proc. 2014 IEEE International Conference onBig Data (pp. 19–24). IEEE

  22. Lopez D, Gunasekaran M (2015) “Assessment of Vaccination Strategies Using Fuzzy MulticriteriaDecision Making,” in Proc. Proceedings of the Fifth International Conference on Fuzzy and NeuroComputing (FANCCO-2015) (pp. 195–208). Springer International

  23. Lopez D, Sekaran G (2016) Climate change and disease dynamics - a big data perspective. Int J Infect Dis 45:23–24

    Article  Google Scholar 

  24. Rawal BS, Vijayakumar V, Manogaran G, Varatharajan R, Chilamkurti N Secure Disintegration Protocol for Privacy Preserving Cloud Storage. Wireless Personal Communications, 1–17

  25. Thota C, Manogaran G, Lopez D, Sundarasekar R (2018) Architecture for big data storage in different cloud deployment models. In Handbook of Research on Big Data Storage and Visualization Techniques (pp. 196–226). IGI Global

  26. Wang XA, Huang X, Yang X, Liu L, Wu X (2012) Further observation on proxy re-encryption with keyword search. J Syst Softw 85(3):643–654

    Article  Google Scholar 

  27. Liu Q, Wang G, Wu J (2014) Time-based proxy re-encryption scheme for secure data sharing in a cloud environment. Inf Sci 258:355–370

    Article  Google Scholar 

  28. Manogaran G, Lopez D (2016) Health data analytics using scalable logistic regression with stochastic gradient descent. Int J Adv Intel Paradigms 9:1–15

    Google Scholar 

  29. Manogaran G, Thota C, Lopez D, Vijayakumar V, Abbas KM, Sundarsekar R (2017). Big Data Knowledge System in Healthcare. In Internet of Things and Big Data Technologies for Next Generation Healthcare (pp. 133–157). Springer International Publishing

  30. Manogaran G, Lopez D (2017) Disease surveillance system for big climate data processing and dengue transmission. Int J Ambient Comput Int (IJACI) 8(2):88–105

    Article  Google Scholar 

  31. Manickam A, Devarasan E, Manogaran G, Priyan MK, Varatharajan R, Hsu CH, Krishnamoorthi R (2018). Score level based latent fingerprint enhancement and matching using SIFT feature. Multimedia Tools and Applications, 1–21

  32. Gandhi UD, Kumar PM, Varatharajan R, Manogaran G, Sundarasekar R, Kadu S (2018) HIoTPOT: Surveillance on IoT Devices against Recent Threats. Wireless Personal Communications, 1–16

  33. Shao J, Liu P, Wei G, Ling Y (2012) Anonymous proxy re-encryption. Sec Commun Netw 5(5):439–449

    Article  Google Scholar 

  34. T. Mather, S. Kumaraswamy, and S. Latif (2009) “Cloud security and privacy: an enterprise perspective on risks and compliance.” OReilly Media

  35. H Rhee, I Jeong, J Byun, D Lee (2006) “Difference set attacks on conjunctive keyword search schemes,” in Proc. SDM: VLDB Workshop

  36. P Wang, H Wang, J Pieprzyk (2009) An efficient scheme of common secure indices for conjunctive keyword-based retrieval on encrypted data,” in Proc. WISA

  37. P Golle, J Staddon, and B Waters (2004) Secure conjunctive keyword search over encrypted data,” in Proc. ACNS

  38. Ren K, Wang C, Wang Q (2012) Security challenges for the public cloud. IEEE Internet Comput 16(1):69–73

    Article  Google Scholar 

  39. M Li, S Yu, N Cao, W Lou (2011) Authorized private keyword search over encrypted data in cloud computing, in IEEE ICDCS, 383–392

  40. W Sun, B Wang, N Cao, M Li, W Lou, YT Hou, and H. Li (2013) Privacy preserving multi-keyword text search in the cloud supporting similarity based ranking,” in ACM ASIACCS

  41. Q Wang, C Wang, . Li, K Ren, and W. Lou (2009) Enabling public verifiability and data dynamics for storage security in cloud computing, in Proceedings of the 14th European Conference on Research in Computer Security 355–370

  42. Wang Y, Du J, Cheng X, Liu Z, Lin K (2016) Degradation and encryption for outsourced png images in cloud storage. Int J Grid Utility Comput 7(1):22–28

    Article  Google Scholar 

  43. Thabet M, Boufaida M, Kordon F (2014) An approach for developing an interoperability mechanism between cloud providers. Int J Space-Based Situat Comput 4(2):88–99

    Article  Google Scholar 

  44. E Damiani, S Vimercati, S Jajodia, S Paraboschi, P Samarati (2003) Balancing confidentiality and efficiency in untrusted relational dbmss,” in Proc. ACM CCS

  45. Hore B, Chang E, Diallo M, Mehrotra S (2012) Indexing encrypted documents for supporting efficient keyword search. In: Proc. SDM:VLDB workshop

    Google Scholar 

  46. Singhal A (2001) Modern information retrieval: a brief overview. IEEE Data Eng Bull 24(4):35–43

    Google Scholar 

  47. D Boneh, GD Crescenzo, R Ostrovsky, G Persiano (2004) “Public-key encryption with keyword search,” in EUROCRYPR 506–522

  48. V. Iovino and G. Persiano, “Hidden-vector encryption with groups of prime order,” in Proceedings of the 2nd international conference on Pairing-Based Cryptography, ser. Pairing’ 08. Berlin, Heidelberg: Springer-Verlag, 2008, pp. 75–88

  49. Li X, Ibrahim MH, Kumari S, Sangaiah AK, Gupta V, Choo KKR (2017) Anonymous mutual authentication and key agreement scheme for wearable sensors in wireless body area networks. Comput Netw 129:429–443

    Article  Google Scholar 

  50. Li, X., Niu, J., Kumari, S., Wu, F., & Choo, K. K. R. (2017). A robust biometrics based three-factor authentication scheme for global mobility networks in smart city. Future Generation Computer Systems

  51. Li X, Niu J, Kumari S, Wu F, Sangaiah AK, Choo KKR (2018) A three-factor anonymous authentication scheme for wireless sensor networks in internet of things environments. J Netw Comput Appl 103:194–204

    Article  Google Scholar 

  52. Xiong Li, Jianwei Niu, Md Zakirul Alam Bhuiyan, Fan Wu, Marimuthu Karuppiah, Saru Kumari (2017) A Robust ECC based Provable Secure Authentication Protocol with Privacy Preserving for Industrial Internet of Things. IEEE Transactions on Industrial Informatics. https://doi.org/10.1109/TII.2017.2773666

  53. W Sun, B Wang, N Cao, M Li, W Lou, YT Hou, and . Li (2014) Verifiable privacy preserving multi-keyword text search in the cloud supporting similarity-based ranking,” IEEE Trans Parallel Distrib Syst, vol. 25, no. 11, pp. 3025–3035,

    Article  Google Scholar 

  54. P Liu, J Wang, H Ma, and H Nie (2014) “Efficient verifiable public key encryption with keyword search based on KP-ABE,” in Proc. IEEE 9th Int. Conf. Broadband Wireless Compute., Commun. Appl. (BWCCA), 584–589

  55. Zhang B, Zhang F (2011) An efficient public key encryption with conjunctive-subset keywords search. J Netw Comput Appl 34(1):262–267

    Article  Google Scholar 

  56. Liang K, Huang Q, Schlegel R, Wong DS, Tang C (2013) A conditional proxy broadcast re-encryption scheme supporting timed-release. In: Information security practice and experience. Springer, Berlin, pp 132–146

    Chapter  Google Scholar 

  57. Li J, Shi Y, Zhang Y (2015) Searchable ciphertext-policy attribute-based encryption with revocation in cloud storage. Int J Commun Syst. https://doi.org/10.1002/dac.2942

Download references

Author information

Authors and Affiliations

Authors

Corresponding author

Correspondence to Gunasekaran Manogaran.

Rights and permissions

Springer Nature or its licensor (e.g. a society or other partner) holds exclusive rights to this article under a publishing agreement with the author(s) or other rightsholder(s); author self-archiving of the accepted manuscript version of this article is solely governed by the terms of such publishing agreement and applicable law.

About this article

Check for updates. Verify currency and authenticity via CrossMark

Cite this article

Vijayakumar, V., Priyan, M.K., Ushadevi, G. et al. RETRACTED ARTICLE: E-Health Cloud Security Using Timing Enabled Proxy Re-Encryption. Mobile Netw Appl 24, 1034–1045 (2019). https://doi.org/10.1007/s11036-018-1060-9

Download citation

  • Published:

  • Issue Date:

  • DOI: https://doi.org/10.1007/s11036-018-1060-9

Keywords

Navigation