SlideShare a Scribd company logo
1 of 6
Expressive, Efficient, and Revocable Data Access Control 
for Multi-Authority Cloud Storage 
ABSTRACT: 
Data access control is an effective way to ensure the data security in the cloud. Due 
to data outsourcing and untrusted cloud servers, the data access control becomes a 
challenging issue in cloud storage systems. Ciphertext-Policy Attributebased 
Encryption (CP-ABE) is regarded as one of the most suitable technologies for data 
access control in cloud storage, because it gives data owners more direct control on 
access policies. However, it is difficult to directly apply existing CP-ABE schemes 
to data access control for cloud storage systems because of the attribute revocation 
problem. In this paper, we design an expressive, efficient and revocable data access 
control scheme for multi-authority cloud storage systems, where there are multiple 
authorities co-exist and each authority is able to issue attributes independently. 
Specifically, we propose a revocable multi-authority CP-ABE scheme, and apply it 
as the underlying techniques to design the data access control scheme. Our 
attribute revocation method can efficiently achieve both forward security and 
backward security. The analysis and simulation results show that our proposed data
access control scheme is secure in the random oracle model and is more efficient 
than previous works. 
EXISTING SYSTEM: 
This new paradigm of data hosting and data access services introduces a great 
challenge to dataaccess control. Because the cloud server cannot be fully trusted by 
data owners, they can no longer rely on servers to do access control. Ciphertext- 
Policy Attribute-based Encryption (CP-ABE) is regarded as one of the most 
suitabletechnologies for data access control in cloud storage systems,because it 
gives the data owner more direct control on access policies. In CP-ABE scheme, 
there is an authority that is responsible for attribute management and key 
distribution. 
DISADVANTAGES OF EXISTING SYSTEM: 
 Chase’s multi-authority CP-ABE protocol allows the central authority 
to decrypt allthe ciphertexts, since it holds the master key of the 
system. 
 Chase’s protocol does not support sattribute revocation.
PROPOSED SYSTEM: 
In this paper, we first propose a revocable multiauthority CP-ABE scheme, where 
an efficient and secure revocation method is proposed to solve the attribute 
revocation problem in the system. Our attribute revocation method is efficient in 
the sense that it incurs less communication cost and computation cost, and is 
secure in the sense that it can achieve both backward security (The revoked user 
cannot decrypt any new ciphertext that requires the revoked attribute to 
decrypt)and forward security (The newly joined user can also decrypt the 
previously published ciphertexts1, if it has sufficient.attributes). Our scheme does 
not require the server to be fully trusted, because the key update is enforced by 
each attribute authority not the server. Even if the server is not semitrusted in some 
scenarios, our scheme can still guarantee the backward security. Then, we apply 
our proposed revocable multi-authority CP-ABE scheme as the underlying 
techniques to construct the expressive and secure data access control scheme for 
multi-authority cloud storage systems.
ADVANTAGES OF PROPOSED SYSTEM: 
 We modify the framework of the scheme and make it more practical to cloud 
storage systems, in which data owners are not involved in the key 
generation. 
 We greatly improve the efficiency of the attribute revocation method. 
 We also highly improve the expressiveness of our access control scheme, 
where we remove the limitation that each attribute can only appear at most 
once in a ciphertext.
SYSTEM ARCHITECTURE: 
SYSTEM REQUIREMENTS: 
HARDWARE REQUIREMENTS:
 System : Pentium IV 2.4 GHz. 
 Hard Disk : 40 GB. 
 Floppy Drive : 1.44 Mb. 
 Monitor : 15 VGA Colour. 
 Mouse : Logitech. 
 Ram : 512 Mb. 
SOFTWARE REQUIREMENTS: 
 Operating system : Windows XP/7. 
 Coding Language : JAVA/J2EE 
 IDE : Netbeans 7.4 
 Database : MYSQL 
REFERENCE: 
Kan Yang, Student Member, IEEE, and Xiaohua Jia, Fellow, IEEE“Expressive, 
Efficient, and Revocable Data Access Control for Multi-Authority Cloud 
Storage” IEEE TRANSACTIONS ON PARALLEL AND DISTRIBUTED 
SYSTEMS,VOL. 25,NO. 7,JULY 2014.

More Related Content

What's hot

Authentication on Cloud using Attribute Based Encryption
Authentication on Cloud using Attribute Based EncryptionAuthentication on Cloud using Attribute Based Encryption
Authentication on Cloud using Attribute Based Encryption
Ankit Raj
 
RAAC: Robust and Auditable Access Control with Multiple Attribute Authorities...
RAAC: Robust and Auditable Access Control with Multiple Attribute Authorities...RAAC: Robust and Auditable Access Control with Multiple Attribute Authorities...
RAAC: Robust and Auditable Access Control with Multiple Attribute Authorities...
Prasadu Peddi
 
Final year presentation
Final year presentationFinal year presentation
Final year presentation
Abhishek Jain
 

What's hot (16)

Authentication on Cloud using Attribute Based Encryption
Authentication on Cloud using Attribute Based EncryptionAuthentication on Cloud using Attribute Based Encryption
Authentication on Cloud using Attribute Based Encryption
 
Privacypreservingdelegatedaccesscontrolinpublicclouds
Privacypreservingdelegatedaccesscontrolinpublicclouds Privacypreservingdelegatedaccesscontrolinpublicclouds
Privacypreservingdelegatedaccesscontrolinpublicclouds
 
Privacy preserving delegated access control in public clouds
Privacy preserving delegated access control in public cloudsPrivacy preserving delegated access control in public clouds
Privacy preserving delegated access control in public clouds
 
Privacy preserving delegated access control in public cloud
Privacy preserving delegated access control in public cloudPrivacy preserving delegated access control in public cloud
Privacy preserving delegated access control in public cloud
 
An efficient certificateless encryption for data sharing on public cloud
An efficient certificateless encryption for data sharing on public cloudAn efficient certificateless encryption for data sharing on public cloud
An efficient certificateless encryption for data sharing on public cloud
 
An efficient certificate less encryption for
An efficient certificate less encryption forAn efficient certificate less encryption for
An efficient certificate less encryption for
 
RAAC: Robust and Auditable Access Control with Multiple Attribute Authorities...
RAAC: Robust and Auditable Access Control with Multiple Attribute Authorities...RAAC: Robust and Auditable Access Control with Multiple Attribute Authorities...
RAAC: Robust and Auditable Access Control with Multiple Attribute Authorities...
 
Final year presentation
Final year presentationFinal year presentation
Final year presentation
 
Audit free cloud storage via deniable attribute based encryption
Audit free cloud storage via  deniable attribute based encryptionAudit free cloud storage via  deniable attribute based encryption
Audit free cloud storage via deniable attribute based encryption
 
Acquisition of Secured Data from Cloud
Acquisition of Secured Data from CloudAcquisition of Secured Data from Cloud
Acquisition of Secured Data from Cloud
 
Access policy consolidation for event processing systems
Access policy consolidation for event processing systemsAccess policy consolidation for event processing systems
Access policy consolidation for event processing systems
 
Access policy consolidation for event processing systems
Access policy consolidation for event processing systemsAccess policy consolidation for event processing systems
Access policy consolidation for event processing systems
 
Ppt 1
Ppt 1Ppt 1
Ppt 1
 
KEY AGGREGATE CRYPTOSYSTEM FOR SCALABLE DATA SHARING IN CLOUD
KEY AGGREGATE CRYPTOSYSTEM FOR SCALABLE DATA SHARING IN CLOUDKEY AGGREGATE CRYPTOSYSTEM FOR SCALABLE DATA SHARING IN CLOUD
KEY AGGREGATE CRYPTOSYSTEM FOR SCALABLE DATA SHARING IN CLOUD
 
Audit free cloud storage via deniable attribute based encryption
Audit free cloud storage via deniable attribute based encryptionAudit free cloud storage via deniable attribute based encryption
Audit free cloud storage via deniable attribute based encryption
 
Privacy preserving delegated access control in public clouds
Privacy preserving delegated access control in public cloudsPrivacy preserving delegated access control in public clouds
Privacy preserving delegated access control in public clouds
 

Similar to JPJ1407 Expressive, Efficient, and Revocable Data Access Control for Multi-Authority Cloud Storage

Secure and-verifiable-policy-update-outsourcing-for-big-data-access-control-i...
Secure and-verifiable-policy-update-outsourcing-for-big-data-access-control-i...Secure and-verifiable-policy-update-outsourcing-for-big-data-access-control-i...
Secure and-verifiable-policy-update-outsourcing-for-big-data-access-control-i...
Kamal Spring
 
Attribute based encryption in cloud with significant reduction reviw2
Attribute based encryption in cloud with significant reduction reviw2Attribute based encryption in cloud with significant reduction reviw2
Attribute based encryption in cloud with significant reduction reviw2
Naveena N
 
Dont look at this
Dont look at thisDont look at this
Dont look at this
mylawyer1
 

Similar to JPJ1407 Expressive, Efficient, and Revocable Data Access Control for Multi-Authority Cloud Storage (20)

expressive, efficient, and revocable data access control for multi authority ...
expressive, efficient, and revocable data access control for multi authority ...expressive, efficient, and revocable data access control for multi authority ...
expressive, efficient, and revocable data access control for multi authority ...
 
Attribute based encryption with verifiable outsourced decryption
Attribute based encryption with verifiable outsourced decryptionAttribute based encryption with verifiable outsourced decryption
Attribute based encryption with verifiable outsourced decryption
 
JAVA 2013 IEEE CLOUDCOMPUTING PROJECT Attribute based encryption with verifia...
JAVA 2013 IEEE CLOUDCOMPUTING PROJECT Attribute based encryption with verifia...JAVA 2013 IEEE CLOUDCOMPUTING PROJECT Attribute based encryption with verifia...
JAVA 2013 IEEE CLOUDCOMPUTING PROJECT Attribute based encryption with verifia...
 
Secure and-verifiable-policy-update-outsourcing-for-big-data-access-control-i...
Secure and-verifiable-policy-update-outsourcing-for-big-data-access-control-i...Secure and-verifiable-policy-update-outsourcing-for-big-data-access-control-i...
Secure and-verifiable-policy-update-outsourcing-for-big-data-access-control-i...
 
ITDCC01.ppt
ITDCC01.pptITDCC01.ppt
ITDCC01.ppt
 
Attribute based data sharing scheme revisited in cloud computing
Attribute based data sharing scheme revisited in cloud computingAttribute based data sharing scheme revisited in cloud computing
Attribute based data sharing scheme revisited in cloud computing
 
ITDCC05.ppt
ITDCC05.pptITDCC05.ppt
ITDCC05.ppt
 
C04932125
C04932125C04932125
C04932125
 
IRJET- Data Centric Access Control Solution with Role baesd Proxy Re-Encryption
IRJET- Data Centric Access Control Solution with Role baesd Proxy Re-EncryptionIRJET- Data Centric Access Control Solution with Role baesd Proxy Re-Encryption
IRJET- Data Centric Access Control Solution with Role baesd Proxy Re-Encryption
 
Providing user security guarantees in public infrastructure clouds
Providing user security guarantees in public infrastructure cloudsProviding user security guarantees in public infrastructure clouds
Providing user security guarantees in public infrastructure clouds
 
Investigation on Revocable Fine-grained Access Control Scheme for Multi-Autho...
Investigation on Revocable Fine-grained Access Control Scheme for Multi-Autho...Investigation on Revocable Fine-grained Access Control Scheme for Multi-Autho...
Investigation on Revocable Fine-grained Access Control Scheme for Multi-Autho...
 
Cloud Computing Environment using Secured Access Control Technique
Cloud Computing Environment using Secured Access Control TechniqueCloud Computing Environment using Secured Access Control Technique
Cloud Computing Environment using Secured Access Control Technique
 
Hasbe a hierarchical attribute based solution
Hasbe a hierarchical attribute based solutionHasbe a hierarchical attribute based solution
Hasbe a hierarchical attribute based solution
 
Attribute based encryption in cloud with significant reduction reviw2
Attribute based encryption in cloud with significant reduction reviw2Attribute based encryption in cloud with significant reduction reviw2
Attribute based encryption in cloud with significant reduction reviw2
 
JAVA 2013 IEEE CLOUDCOMPUTING PROJECT Privacy preserving delegated access con...
JAVA 2013 IEEE CLOUDCOMPUTING PROJECT Privacy preserving delegated access con...JAVA 2013 IEEE CLOUDCOMPUTING PROJECT Privacy preserving delegated access con...
JAVA 2013 IEEE CLOUDCOMPUTING PROJECT Privacy preserving delegated access con...
 
Identifying the Performance Efficiency Of Attribute Based Encryption With Sec...
Identifying the Performance Efficiency Of Attribute Based Encryption With Sec...Identifying the Performance Efficiency Of Attribute Based Encryption With Sec...
Identifying the Performance Efficiency Of Attribute Based Encryption With Sec...
 
Ijcatr04051007
Ijcatr04051007Ijcatr04051007
Ijcatr04051007
 
Test
TestTest
Test
 
Dont look at this
Dont look at thisDont look at this
Dont look at this
 
Test
TestTest
Test
 

More from chennaijp

More from chennaijp (20)

JPEEE1440 Cascaded Two-Level Inverter-Based Multilevel STATCOM for High-Pow...
JPEEE1440   Cascaded Two-Level Inverter-Based Multilevel STATCOM for High-Pow...JPEEE1440   Cascaded Two-Level Inverter-Based Multilevel STATCOM for High-Pow...
JPEEE1440 Cascaded Two-Level Inverter-Based Multilevel STATCOM for High-Pow...
 
JPN1423 Stars a Statistical Traffic Pattern
JPN1423   Stars a Statistical Traffic PatternJPN1423   Stars a Statistical Traffic Pattern
JPN1423 Stars a Statistical Traffic Pattern
 
JPN1422 Defending Against Collaborative Attacks by Malicious Nodes in MANETs...
JPN1422  Defending Against Collaborative Attacks by Malicious Nodes in MANETs...JPN1422  Defending Against Collaborative Attacks by Malicious Nodes in MANETs...
JPN1422 Defending Against Collaborative Attacks by Malicious Nodes in MANETs...
 
JPN1420 Joint Routing and Medium Access Control in Fixed Random Access Wire...
JPN1420   Joint Routing and Medium Access Control in Fixed Random Access Wire...JPN1420   Joint Routing and Medium Access Control in Fixed Random Access Wire...
JPN1420 Joint Routing and Medium Access Control in Fixed Random Access Wire...
 
JPN1418 PSR: A Lightweight Proactive Source Routing Protocol For Mobile Ad H...
JPN1418  PSR: A Lightweight Proactive Source Routing Protocol For Mobile Ad H...JPN1418  PSR: A Lightweight Proactive Source Routing Protocol For Mobile Ad H...
JPN1418 PSR: A Lightweight Proactive Source Routing Protocol For Mobile Ad H...
 
JPN1417 AASR: An Authenticated Anonymous Secure Routing Protocol for MANETs ...
JPN1417  AASR: An Authenticated Anonymous Secure Routing Protocol for MANETs ...JPN1417  AASR: An Authenticated Anonymous Secure Routing Protocol for MANETs ...
JPN1417 AASR: An Authenticated Anonymous Secure Routing Protocol for MANETs ...
 
JPN1416 Sleep Scheduling for Geographic Routing in Duty-Cycled Mobile Sensor...
JPN1416  Sleep Scheduling for Geographic Routing in Duty-Cycled Mobile Sensor...JPN1416  Sleep Scheduling for Geographic Routing in Duty-Cycled Mobile Sensor...
JPN1416 Sleep Scheduling for Geographic Routing in Duty-Cycled Mobile Sensor...
 
JPN1415 R3E: Reliable Reactive Routing Enhancement for Wireless Sensor Netw...
JPN1415   R3E: Reliable Reactive Routing Enhancement for Wireless Sensor Netw...JPN1415   R3E: Reliable Reactive Routing Enhancement for Wireless Sensor Netw...
JPN1415 R3E: Reliable Reactive Routing Enhancement for Wireless Sensor Netw...
 
JPN1411 Secure Continuous Aggregation in Wireless Sensor Networks
JPN1411   Secure Continuous Aggregation in Wireless Sensor NetworksJPN1411   Secure Continuous Aggregation in Wireless Sensor Networks
JPN1411 Secure Continuous Aggregation in Wireless Sensor Networks
 
JPN1414 Distributed Deployment Algorithms for Improved Coverage in a Networ...
JPN1414   Distributed Deployment Algorithms for Improved Coverage in a Networ...JPN1414   Distributed Deployment Algorithms for Improved Coverage in a Networ...
JPN1414 Distributed Deployment Algorithms for Improved Coverage in a Networ...
 
JPN1413 An Energy-Balanced Routing Method Based on Forward-Aware Factor for...
JPN1413   An Energy-Balanced Routing Method Based on Forward-Aware Factor for...JPN1413   An Energy-Balanced Routing Method Based on Forward-Aware Factor for...
JPN1413 An Energy-Balanced Routing Method Based on Forward-Aware Factor for...
 
JPN1412 Transmission-Efficient Clustering Method for Wireless Sensor Networ...
JPN1412   Transmission-Efficient Clustering Method for Wireless Sensor Networ...JPN1412   Transmission-Efficient Clustering Method for Wireless Sensor Networ...
JPN1412 Transmission-Efficient Clustering Method for Wireless Sensor Networ...
 
JPN1410 Secure and Efficient Data Transmission for Cluster-Based Wireless Se...
JPN1410  Secure and Efficient Data Transmission for Cluster-Based Wireless Se...JPN1410  Secure and Efficient Data Transmission for Cluster-Based Wireless Se...
JPN1410 Secure and Efficient Data Transmission for Cluster-Based Wireless Se...
 
JPN1409 Neighbor Table Based Shortcut Tree Routing in ZigBee Wireless Networks
JPN1409  Neighbor Table Based Shortcut Tree Routing in ZigBee Wireless NetworksJPN1409  Neighbor Table Based Shortcut Tree Routing in ZigBee Wireless Networks
JPN1409 Neighbor Table Based Shortcut Tree Routing in ZigBee Wireless Networks
 
JPN1408 Hop-by-Hop Message Authentication and Source Privacy in Wireless Sen...
JPN1408  Hop-by-Hop Message Authentication and Source Privacy in Wireless Sen...JPN1408  Hop-by-Hop Message Authentication and Source Privacy in Wireless Sen...
JPN1408 Hop-by-Hop Message Authentication and Source Privacy in Wireless Sen...
 
JPN1406 Snapshot and Continuous Data Collection in Probabilistic Wireless S...
JPN1406   Snapshot and Continuous Data Collection in Probabilistic Wireless S...JPN1406   Snapshot and Continuous Data Collection in Probabilistic Wireless S...
JPN1406 Snapshot and Continuous Data Collection in Probabilistic Wireless S...
 
JPN1405 RBTP: Low-Power Mobile Discovery Protocol through Recursive Binary T...
JPN1405  RBTP: Low-Power Mobile Discovery Protocol through Recursive Binary T...JPN1405  RBTP: Low-Power Mobile Discovery Protocol through Recursive Binary T...
JPN1405 RBTP: Low-Power Mobile Discovery Protocol through Recursive Binary T...
 
JPN1404 Optimal Multicast Capacity and Delay Tradeoffs in MANETs
JPN1404 Optimal Multicast Capacity and Delay Tradeoffs in MANETsJPN1404 Optimal Multicast Capacity and Delay Tradeoffs in MANETs
JPN1404 Optimal Multicast Capacity and Delay Tradeoffs in MANETs
 
JPM1410 Images as Occlusions of Textures: A Framework for Segmentation
JPM1410   Images as Occlusions of Textures: A Framework for SegmentationJPM1410   Images as Occlusions of Textures: A Framework for Segmentation
JPM1410 Images as Occlusions of Textures: A Framework for Segmentation
 
JPM1407 Exposing Digital Image Forgeries by Illumination Color Classification
JPM1407   Exposing Digital Image Forgeries by Illumination Color ClassificationJPM1407   Exposing Digital Image Forgeries by Illumination Color Classification
JPM1407 Exposing Digital Image Forgeries by Illumination Color Classification
 

Recently uploaded

Hospital management system project report.pdf
Hospital management system project report.pdfHospital management system project report.pdf
Hospital management system project report.pdf
Kamal Acharya
 

Recently uploaded (20)

Unleashing the Power of the SORA AI lastest leap
Unleashing the Power of the SORA AI lastest leapUnleashing the Power of the SORA AI lastest leap
Unleashing the Power of the SORA AI lastest leap
 
Hospital management system project report.pdf
Hospital management system project report.pdfHospital management system project report.pdf
Hospital management system project report.pdf
 
Thermal Engineering-R & A / C - unit - V
Thermal Engineering-R & A / C - unit - VThermal Engineering-R & A / C - unit - V
Thermal Engineering-R & A / C - unit - V
 
Design For Accessibility: Getting it right from the start
Design For Accessibility: Getting it right from the startDesign For Accessibility: Getting it right from the start
Design For Accessibility: Getting it right from the start
 
DC MACHINE-Motoring and generation, Armature circuit equation
DC MACHINE-Motoring and generation, Armature circuit equationDC MACHINE-Motoring and generation, Armature circuit equation
DC MACHINE-Motoring and generation, Armature circuit equation
 
Block diagram reduction techniques in control systems.ppt
Block diagram reduction techniques in control systems.pptBlock diagram reduction techniques in control systems.ppt
Block diagram reduction techniques in control systems.ppt
 
Online food ordering system project report.pdf
Online food ordering system project report.pdfOnline food ordering system project report.pdf
Online food ordering system project report.pdf
 
Unit 4_Part 1 CSE2001 Exception Handling and Function Template and Class Temp...
Unit 4_Part 1 CSE2001 Exception Handling and Function Template and Class Temp...Unit 4_Part 1 CSE2001 Exception Handling and Function Template and Class Temp...
Unit 4_Part 1 CSE2001 Exception Handling and Function Template and Class Temp...
 
Navigating Complexity: The Role of Trusted Partners and VIAS3D in Dassault Sy...
Navigating Complexity: The Role of Trusted Partners and VIAS3D in Dassault Sy...Navigating Complexity: The Role of Trusted Partners and VIAS3D in Dassault Sy...
Navigating Complexity: The Role of Trusted Partners and VIAS3D in Dassault Sy...
 
FEA Based Level 3 Assessment of Deformed Tanks with Fluid Induced Loads
FEA Based Level 3 Assessment of Deformed Tanks with Fluid Induced LoadsFEA Based Level 3 Assessment of Deformed Tanks with Fluid Induced Loads
FEA Based Level 3 Assessment of Deformed Tanks with Fluid Induced Loads
 
HAND TOOLS USED AT ELECTRONICS WORK PRESENTED BY KOUSTAV SARKAR
HAND TOOLS USED AT ELECTRONICS WORK PRESENTED BY KOUSTAV SARKARHAND TOOLS USED AT ELECTRONICS WORK PRESENTED BY KOUSTAV SARKAR
HAND TOOLS USED AT ELECTRONICS WORK PRESENTED BY KOUSTAV SARKAR
 
Thermal Engineering Unit - I & II . ppt
Thermal Engineering  Unit - I & II . pptThermal Engineering  Unit - I & II . ppt
Thermal Engineering Unit - I & II . ppt
 
data_management_and _data_science_cheat_sheet.pdf
data_management_and _data_science_cheat_sheet.pdfdata_management_and _data_science_cheat_sheet.pdf
data_management_and _data_science_cheat_sheet.pdf
 
kiln thermal load.pptx kiln tgermal load
kiln thermal load.pptx kiln tgermal loadkiln thermal load.pptx kiln tgermal load
kiln thermal load.pptx kiln tgermal load
 
Online electricity billing project report..pdf
Online electricity billing project report..pdfOnline electricity billing project report..pdf
Online electricity billing project report..pdf
 
Generative AI or GenAI technology based PPT
Generative AI or GenAI technology based PPTGenerative AI or GenAI technology based PPT
Generative AI or GenAI technology based PPT
 
AIRCANVAS[1].pdf mini project for btech students
AIRCANVAS[1].pdf mini project for btech studentsAIRCANVAS[1].pdf mini project for btech students
AIRCANVAS[1].pdf mini project for btech students
 
S1S2 B.Arch MGU - HOA1&2 Module 3 -Temple Architecture of Kerala.pptx
S1S2 B.Arch MGU - HOA1&2 Module 3 -Temple Architecture of Kerala.pptxS1S2 B.Arch MGU - HOA1&2 Module 3 -Temple Architecture of Kerala.pptx
S1S2 B.Arch MGU - HOA1&2 Module 3 -Temple Architecture of Kerala.pptx
 
NO1 Top No1 Amil Baba In Azad Kashmir, Kashmir Black Magic Specialist Expert ...
NO1 Top No1 Amil Baba In Azad Kashmir, Kashmir Black Magic Specialist Expert ...NO1 Top No1 Amil Baba In Azad Kashmir, Kashmir Black Magic Specialist Expert ...
NO1 Top No1 Amil Baba In Azad Kashmir, Kashmir Black Magic Specialist Expert ...
 
Employee leave management system project.
Employee leave management system project.Employee leave management system project.
Employee leave management system project.
 

JPJ1407 Expressive, Efficient, and Revocable Data Access Control for Multi-Authority Cloud Storage

  • 1. Expressive, Efficient, and Revocable Data Access Control for Multi-Authority Cloud Storage ABSTRACT: Data access control is an effective way to ensure the data security in the cloud. Due to data outsourcing and untrusted cloud servers, the data access control becomes a challenging issue in cloud storage systems. Ciphertext-Policy Attributebased Encryption (CP-ABE) is regarded as one of the most suitable technologies for data access control in cloud storage, because it gives data owners more direct control on access policies. However, it is difficult to directly apply existing CP-ABE schemes to data access control for cloud storage systems because of the attribute revocation problem. In this paper, we design an expressive, efficient and revocable data access control scheme for multi-authority cloud storage systems, where there are multiple authorities co-exist and each authority is able to issue attributes independently. Specifically, we propose a revocable multi-authority CP-ABE scheme, and apply it as the underlying techniques to design the data access control scheme. Our attribute revocation method can efficiently achieve both forward security and backward security. The analysis and simulation results show that our proposed data
  • 2. access control scheme is secure in the random oracle model and is more efficient than previous works. EXISTING SYSTEM: This new paradigm of data hosting and data access services introduces a great challenge to dataaccess control. Because the cloud server cannot be fully trusted by data owners, they can no longer rely on servers to do access control. Ciphertext- Policy Attribute-based Encryption (CP-ABE) is regarded as one of the most suitabletechnologies for data access control in cloud storage systems,because it gives the data owner more direct control on access policies. In CP-ABE scheme, there is an authority that is responsible for attribute management and key distribution. DISADVANTAGES OF EXISTING SYSTEM:  Chase’s multi-authority CP-ABE protocol allows the central authority to decrypt allthe ciphertexts, since it holds the master key of the system.  Chase’s protocol does not support sattribute revocation.
  • 3. PROPOSED SYSTEM: In this paper, we first propose a revocable multiauthority CP-ABE scheme, where an efficient and secure revocation method is proposed to solve the attribute revocation problem in the system. Our attribute revocation method is efficient in the sense that it incurs less communication cost and computation cost, and is secure in the sense that it can achieve both backward security (The revoked user cannot decrypt any new ciphertext that requires the revoked attribute to decrypt)and forward security (The newly joined user can also decrypt the previously published ciphertexts1, if it has sufficient.attributes). Our scheme does not require the server to be fully trusted, because the key update is enforced by each attribute authority not the server. Even if the server is not semitrusted in some scenarios, our scheme can still guarantee the backward security. Then, we apply our proposed revocable multi-authority CP-ABE scheme as the underlying techniques to construct the expressive and secure data access control scheme for multi-authority cloud storage systems.
  • 4. ADVANTAGES OF PROPOSED SYSTEM:  We modify the framework of the scheme and make it more practical to cloud storage systems, in which data owners are not involved in the key generation.  We greatly improve the efficiency of the attribute revocation method.  We also highly improve the expressiveness of our access control scheme, where we remove the limitation that each attribute can only appear at most once in a ciphertext.
  • 5. SYSTEM ARCHITECTURE: SYSTEM REQUIREMENTS: HARDWARE REQUIREMENTS:
  • 6.  System : Pentium IV 2.4 GHz.  Hard Disk : 40 GB.  Floppy Drive : 1.44 Mb.  Monitor : 15 VGA Colour.  Mouse : Logitech.  Ram : 512 Mb. SOFTWARE REQUIREMENTS:  Operating system : Windows XP/7.  Coding Language : JAVA/J2EE  IDE : Netbeans 7.4  Database : MYSQL REFERENCE: Kan Yang, Student Member, IEEE, and Xiaohua Jia, Fellow, IEEE“Expressive, Efficient, and Revocable Data Access Control for Multi-Authority Cloud Storage” IEEE TRANSACTIONS ON PARALLEL AND DISTRIBUTED SYSTEMS,VOL. 25,NO. 7,JULY 2014.