FHEID: Plantillas Biométricas con Cero Fugas, Búsqueda Cifrada y Pruebas Privadas

FHEID lidera marcos de Cifrado Totalmente Homomórfico (FHE) para identidad biométrica, ejecutando coincidencia de distancia euclidiana y similitud de coseno sobre vectores de características cifrados de 512 dimensiones en nubes no confiables sin exponer plantillas biométricas.

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)

Autenticación Biométrica FHE que Preserva la Privacidad, Coincidencia de Vectores de Iris/Huella Digital Cifrados en Enclaves de Nube No Confiables

Referencia técnica de ingeniería autorizada para privacy-preserving fhe biometric authentication, encrypted iris/fingerprint vector matching in untrusted cloud enclaves en estándares NIST FIPS 203/204/205, criptografía basada en retículos y mitigación de canales laterales.

Core Engineering Areas

Technical Articles