Privacy-Enhanced Trusted Location Based Services (PE-TLBS) framework based on Direct Anonymous Attestation (DAA) protocol

The proliferation of heterogeneous mobile applications has overridden privacy and security issues. Since privacy threat in Location Based Services (LBS) is very hard to define, new approach of addressing the anonymity issues in Privacy Enhancing Technologies (PETs) using Trusted Computing technologi...

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Published in:ICCAIE 2010 - 2010 International Conference on Computer Applications and Industrial Electronics
Main Author: Othman H.; Hashim H.; Razmi M.A.Y.; Manan J.-L.A.
Format: Conference paper
Language:English
Published: 2010
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-79953869919&doi=10.1109%2fICCAIE.2010.5735093&partnerID=40&md5=db61932572a9914e5616b7fd29433928
id 2-s2.0-79953869919
spelling 2-s2.0-79953869919
Othman H.; Hashim H.; Razmi M.A.Y.; Manan J.-L.A.
Privacy-Enhanced Trusted Location Based Services (PE-TLBS) framework based on Direct Anonymous Attestation (DAA) protocol
2010
ICCAIE 2010 - 2010 International Conference on Computer Applications and Industrial Electronics


10.1109/ICCAIE.2010.5735093
https://www.scopus.com/inward/record.uri?eid=2-s2.0-79953869919&doi=10.1109%2fICCAIE.2010.5735093&partnerID=40&md5=db61932572a9914e5616b7fd29433928
The proliferation of heterogeneous mobile applications has overridden privacy and security issues. Since privacy threat in Location Based Services (LBS) is very hard to define, new approach of addressing the anonymity issues in Privacy Enhancing Technologies (PETs) using Trusted Computing technologies will result the privacy enhancement of user personal data and location information in mobile network services. In this paper we present a framework called Privacy Enhanced Trusted LBS (PE-TLBS) providing trusted services while protecting the client privacy. This paper mainly focuses on implementing a simplified protocol based on anonymous attestation that allows users to attest and authenticate an attribute while keeping their identity hidden under anonymity. The key idea behind the new approach is to hierarchically encrypt location information using RSA key pairs known as Endorsement Key (EK) and Attestation Identity Key (AIK), and distribute the appropriate keys only to Trusted Group of clients with the necessary permission. The trust-ability is measured based on Direct Anonymous Attestation (DAA) scheme supported by Trusted Platform Module (TPM) functionalities in terms of preserving anonymity, detecting rogue users/TPM and possible linkability complying with privacy requirements. We form Virtualized Secure Framework technique using TPM Emulator and TCG Software Stack (TSS) to simulate and make the accession to TPM much simpler while maintaining the functionality as well as provide Application Programming Interfaces (APIs). © 2010 IEEE.


English
Conference paper

author Othman H.; Hashim H.; Razmi M.A.Y.; Manan J.-L.A.
spellingShingle Othman H.; Hashim H.; Razmi M.A.Y.; Manan J.-L.A.
Privacy-Enhanced Trusted Location Based Services (PE-TLBS) framework based on Direct Anonymous Attestation (DAA) protocol
author_facet Othman H.; Hashim H.; Razmi M.A.Y.; Manan J.-L.A.
author_sort Othman H.; Hashim H.; Razmi M.A.Y.; Manan J.-L.A.
title Privacy-Enhanced Trusted Location Based Services (PE-TLBS) framework based on Direct Anonymous Attestation (DAA) protocol
title_short Privacy-Enhanced Trusted Location Based Services (PE-TLBS) framework based on Direct Anonymous Attestation (DAA) protocol
title_full Privacy-Enhanced Trusted Location Based Services (PE-TLBS) framework based on Direct Anonymous Attestation (DAA) protocol
title_fullStr Privacy-Enhanced Trusted Location Based Services (PE-TLBS) framework based on Direct Anonymous Attestation (DAA) protocol
title_full_unstemmed Privacy-Enhanced Trusted Location Based Services (PE-TLBS) framework based on Direct Anonymous Attestation (DAA) protocol
title_sort Privacy-Enhanced Trusted Location Based Services (PE-TLBS) framework based on Direct Anonymous Attestation (DAA) protocol
publishDate 2010
container_title ICCAIE 2010 - 2010 International Conference on Computer Applications and Industrial Electronics
container_volume
container_issue
doi_str_mv 10.1109/ICCAIE.2010.5735093
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-79953869919&doi=10.1109%2fICCAIE.2010.5735093&partnerID=40&md5=db61932572a9914e5616b7fd29433928
description The proliferation of heterogeneous mobile applications has overridden privacy and security issues. Since privacy threat in Location Based Services (LBS) is very hard to define, new approach of addressing the anonymity issues in Privacy Enhancing Technologies (PETs) using Trusted Computing technologies will result the privacy enhancement of user personal data and location information in mobile network services. In this paper we present a framework called Privacy Enhanced Trusted LBS (PE-TLBS) providing trusted services while protecting the client privacy. This paper mainly focuses on implementing a simplified protocol based on anonymous attestation that allows users to attest and authenticate an attribute while keeping their identity hidden under anonymity. The key idea behind the new approach is to hierarchically encrypt location information using RSA key pairs known as Endorsement Key (EK) and Attestation Identity Key (AIK), and distribute the appropriate keys only to Trusted Group of clients with the necessary permission. The trust-ability is measured based on Direct Anonymous Attestation (DAA) scheme supported by Trusted Platform Module (TPM) functionalities in terms of preserving anonymity, detecting rogue users/TPM and possible linkability complying with privacy requirements. We form Virtualized Secure Framework technique using TPM Emulator and TCG Software Stack (TSS) to simulate and make the accession to TPM much simpler while maintaining the functionality as well as provide Application Programming Interfaces (APIs). © 2010 IEEE.
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