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IEEE Projects for CSE


Cloud Computing

1. Attribute-based Access Control with Constant-size Ciphertext in Cloud Computing

2. Catch You if You Misbehave: Ranked Keyword Search Results Verification in Cloud Computing

3. Dynamic and Public Auditing with Fair Arbitration for Cloud Data

4. Enabling Cloud Storage Auditing with Verifiable Outsourcing of Key Updates

5. Identity-Based Encryption with Cloud Revocation Authority and Its Applications

6. Prioritization of Overflow Tasks to Improve Performance of Mobile Cloud

7. Private Over-threshold Aggregation Protocols over Distributed Datasets

8. Providing User Security Guarantees in Public Infrastructure Clouds

9. Shadow Attacks based on Password Reuses: A Quantitative Empirical Analysis

10. The Impact of Review Environment on Review Credibility



Computers

1. Attribute-Based Data Sharing Scheme Revisited in Cloud Computing

2. Beating the Artificial Chaos Fighting OSN Spam Using Its Own Templates

3. Conditional Identity-based Broadcast Proxy Re-Encryption and Its Application to Cloud Email

4. Personalizing Sample Databases With Facebook Information to Increase Intrinsic Motivation

5. TagBook: A Semantic Video Representation without Supervision for Event Detection



2019 IEEE Projects for CSE final year

Intelligent Transportation Systems

1. A Credibility Analysis System for Assessing Information on Twitter

2. An Efficient Privacy-Preserving Outsourced Calculation Toolkits with Multiple Keys

3. Mining Health Examination Records A Graph-based Approach

4. Secure Data Sharing in Cloud Computing Using Revocable-Storage Identity-Based Encryption

5. Text Mining the Contributors to Rail Accidents



Mobile Computing

1. Cross-modal Correlation Learning by Adaptive Hierarchical Semantic Aggregation

2. Inference Attack on Browsing History of Twitter Users using Public Click Analytics and Twitter Metadata using MVC 4 razor

3. Query Reorganisation Algorithms for Efficient Boolean Information Filtering




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Identity-Based Encryption with Cloud Revocation Authority and Its Applications:
Abstract—Identity-based encryption (IBE) is a public key cryptosystem and eliminates the demands of public key infrastructure (PKI) and certificate administration in conventional public key settings. Due to the absence of PKI, the revocation problem is a critical issue in IBE settings. Several revocable IBE schemes have been proposed regarding this issue. Quite recently, by embedding an outsourcing computation technique into IBE, Li et al. proposed a revocable IBE scheme with a key-update cloud service provider (KU-CSP). However, their scheme has two shortcomings. One is that the computation and communication costs are higher than previous revocable IBE schemes. The other shortcoming is lack of scalability in the sense that the KU-CSP must keep a secret value for each user. In the article, we propose a new revocable IBE scheme with a cloud revocation authority (CRA) to solve the two shortcomings, namely, the performance is significantly improved and the CRA holds only a system secret for all the users. For security analysis, we demonstrate that the proposed scheme is semantically secure under the decisional bilinear Diffie-Hellman (DBDH) assumption. Finally, we extend the proposed revocable IBE scheme to present a CRA-aided authentication scheme with period-limited privileges for managing a large number of various cloud services.