FHEID: Privacy-Preserving FHE Biometrics, Encrypted Identity & Cloud Enclaves
FHEID pioneers Fully Homomorphic Encryption (FHE) frameworks for biometric identity, executing Euclidean distance and cosine similarity matching over encrypted 512-dimensional feature vectors in untrusted cloud environments with zero biometric template exposure.
FHEID Homomorphic Biometric Pipeline & Cloud Matching Topology
Client biometric extraction, CKKS homomorphic encryption, and blind cloud similarity search
Central System: FHE Biometric Engine - Encrypted Vector Matching Core
Cryptographic Nodes
- Client Feature Extractor
- CKKS Homomorphic Encrypter
- Untrusted Cloud Matcher
- Encrypted Threshold Evaluator
- Client Decision Decryptor
Architectural Layers & Protocols
- Client Biometric Extraction Plane (Edge Neural Network / Secure Enclave): Extracting normalized 512-element floating-point feature embeddings from iris, face, or fingerprint sensors.
- Homomorphic Vector Cryptosystem (CKKS Ring-LWE Homomorphic Encryption): Encrypting biometric embeddings into high-degree polynomial rings with configurable noise budgets.
- Blind Cloud Evaluation Engine (SIMD Vector Batching & Rescaling Operations): Computing encrypted dot products across millions of stored encrypted templates in parallel without decryption.
- Privacy Compliance & Audit Layer (GDPR Article 9 / CCPA / BIPA Biometric Shield): Guaranteeing mathematical impossibility of biometric template reconstruction from stolen databases.
Key Metrics: Zero Decryption (Cloud Biometric Privacy) | < 85 ms (Homomorphic Match Time) | 512 Dimensions (Vector Embedding Size) | 100% (GDPR / BIPA Compliance)
Privacy-Preserving FHE Biometric Authentication, Encrypted Iris/Fingerprint Vector Matching in Untrusted Cloud Enclaves
Authoritative technical engineering reference for privacy-preserving fhe biometric authentication, encrypted iris/fingerprint vector matching in untrusted cloud enclaves in NIST FIPS 203/204/205 standards, lattice-based cryptography, side-channel attack mitigation, and quantum-resilient infrastructure.
Core Engineering Areas
Technical Articles