TrustedDB: A Trusted Hardware based Database with Privacy and Data Confidentiality
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Year of Project2013
TrustedDB: A Trusted Hardware based Database with Privacy and Data Confidentiality IEEE Projects 2013 | Final year projects | BE Projects | Abstract: Traditionally, as soon as confidentiality becomes a concern, data is encrypted before outsourcing to a service provider. Any software-based cryptographic constructs then deployed, for server-side query processing on the encrypted data, inherently limit query expressiveness. Here, we introduce TrustedDB, an outsourced database prototype that allows clients to execute SQL queries with privacy and under regulatory compliance constraints by leveraging server-hosted, tamper-proof trusted hardware in critical query processing stages, thereby removing any limitations on the type of supported queries. Despite the cost overhead and performance limitations of trusted hardware, we show that the costs per query are orders of magnitude lower than any (existing or) potential future software-only mechanisms. TrustedDB is built and runs on actual hardware, and its performance and costs are evaluated here.
TrustedDB: A Trusted Hardware based Database with Privacy and Data Confidentiality. Although the benefits of outsourcing and clouds are well known, significant challenges yet lie in the path of large-scale adoption since such services often require their customers to inherently trust the provider with full access to the outsourced datasets. Numerous instances of illicit insider behavior or data leaks have left clients reluctant to place sensitive data under the control of a remote, third-party provider, without practical assurances of privacy and confidentiality, especially in business, healthcare and government frameworks. Moreover, today’s privacy guarantees for such services are at best declarative and subject customers to unreasonable fineprint clauses. E.g., allowing the server operator to use customer behavior and content for commercial profiling or governmental surveillance purposes.
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3). HARDWARE SOFTWARE SPECIFICATION
5). INPUT DESIGN &OUTPUT DESIGN
7). LITERATURE SURVEY
9). SOFTWARE ENVIRONMENT
10). SYSTEM ANALYSIS
11). SYSTEM DESIGN
12). SYSTEM STUDY
13). SYSTEM TESTING
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