Javascript must be enabled to continue!
Achievable CCA2 Relaxation for Homomorphic Encryption
View through CrossRef
Abstract
Homomorphic encryption () protects data in-use, but can be computationally expensive. To avoid the costly bootstrapping procedure that refreshes ciphertexts, some works have explored client-aided outsourcing protocols, where the client intermittently refreshes ciphertexts for a server that is performing homomorphic computations. But is this approach secure against malicious servers? We present a -secure encryption scheme that is completely insecure in this setting. We define a new notion of security, called , that we prove is sufficient. Additionally, we show:
Homomorphic encryption schemes that have a certain type of circuit privacy—for example, schemes in which ciphertexts can be “sanitized"—are -secure.
In particular, assuming certain existing schemes are -secure, they are also -secure.
For certain encryption schemes, like Brakerski-Vaikuntanathan, that have a property that we call oblivious secret key extraction, -security implies circular security—i.e., that it is secure to provide an encryption of the secret key in a form usable for bootstrapping (to construct fully homomorphic encryption).
Springer Science and Business Media LLC
Title: Achievable CCA2 Relaxation for Homomorphic Encryption
Description:
Abstract
Homomorphic encryption () protects data in-use, but can be computationally expensive.
To avoid the costly bootstrapping procedure that refreshes ciphertexts, some works have explored client-aided outsourcing protocols, where the client intermittently refreshes ciphertexts for a server that is performing homomorphic computations.
But is this approach secure against malicious servers? We present a -secure encryption scheme that is completely insecure in this setting.
We define a new notion of security, called , that we prove is sufficient.
Additionally, we show:
Homomorphic encryption schemes that have a certain type of circuit privacy—for example, schemes in which ciphertexts can be “sanitized"—are -secure.
In particular, assuming certain existing schemes are -secure, they are also -secure.
For certain encryption schemes, like Brakerski-Vaikuntanathan, that have a property that we call oblivious secret key extraction, -security implies circular security—i.
e.
, that it is secure to provide an encryption of the secret key in a form usable for bootstrapping (to construct fully homomorphic encryption).
Related Results
Development Paillier's library of fully homomorphic encryption
Development Paillier's library of fully homomorphic encryption
One of the new areas of cryptography considered-homomorphic cryptography. The article presents the main areas of application of homomorphic encryption. An analysis of existing deve...
Towards Secure Big Data Analysis via Fully Homomorphic Encryption Algorithms
Towards Secure Big Data Analysis via Fully Homomorphic Encryption Algorithms
Privacy-preserving techniques allow private information to be used without compromising privacy. Most encryption algorithms, such as the Advanced Encryption Standard (AES) algorith...
Power of Homomorphic Encryption in Secure Data Processing
Power of Homomorphic Encryption in Secure Data Processing
Homomorphic encryption is a form of encryption that allows computations to be performed on encrypted data without first having to decrypt it. This paper presents a detailed discuss...
Homomorphic Encryption and its Application to Blockchain
Homomorphic Encryption and its Application to Blockchain
The concept, method, algorithm and application of the advanced field of cryptography, homomorphic encryption, as well as its application to the field of blockchain are discussed in...
Analyzing the efficiency of AI-powered encryption solutions in safeguarding financial data for SMBs
Analyzing the efficiency of AI-powered encryption solutions in safeguarding financial data for SMBs
The study explores the significance of artificial intelligence (AI) in advancing encryption technologies, focusing on small and medium-sized businesses (SMBs) and their financial d...
Leveraging Searchable Encryption through Homomorphic Encryption: A Comprehensive Analysis
Leveraging Searchable Encryption through Homomorphic Encryption: A Comprehensive Analysis
The widespread adoption of cloud infrastructures has revolutionized data storage and access. However, it has also raised concerns regarding the privacy of sensitive data. To addres...
Enhanced Homomorphic Encryption for Cloud Security Through Individual Optimization
Enhanced Homomorphic Encryption for Cloud Security Through Individual Optimization
Cloud computing is susceptible to a wide range of security issues since it is decentralized. Inappropriate actors may take advantage of these vulnerabilities. Using a method known ...
OPTIMIZED CLOUD SECURITY ECC-ENHANCED HOMOMORPHIC PAILLIER RE-ENCRYPTION
OPTIMIZED CLOUD SECURITY ECC-ENHANCED HOMOMORPHIC PAILLIER RE-ENCRYPTION
In the dynamic domain of cloud computing, ensuring data security is of utmost importance. Conventional encryption techniques, while providing a high level of ...

