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Software-Defined Perimeters Meet PQC Security

Software-defined perimeters (SDPs) and PQC are converging. By coupling Falcon/Kyber stacks with SDPs, this work enables fully isolated, encrypted communication fabrics. No unauthorized data paths—no plaintext exposure. A secure blueprint for next-generation distributed systems.🌟 Follow us on LinkedIn! Check the updates from…

Dilithium’s Predictable Scalability on DPUs

Dilithium leverages SHAKE-based polynomial sampling and NTT acceleration. Tests on NVIDIA DPUs reveal up to 47% performance impact between security levels. A predictable, scalable signature algorithm for distributed systems. Built for robust authentication in quantum-resistant networks.🌟 Follow us on LinkedIn! Check the…

Falcon/Kyber: Quantum Security for the Deep Edge

Deep-edge computing relies on trusted execution environments and PQC links. Falcon/Kyber integration into DPUs secures even the lightest IoT nodes. Reduced bandwidth and computation amplify energy efficiency. Quantum resilience optimized for the edge.🌟 Follow us on LinkedIn! Check the updates from the…

Kyber: The Lattice Foundation of PQC Key Exchange

 Kyber remains the foundation for quantum-secure key exchange. Its NIST-level performance scales predictably across 512, 768, and 1024 variants. Benchmarking reveals linear trade-offs between security and computational cost. An anchor protocol for PQC deployments at scale.🌟 Follow us on LinkedIn! Check the…

Falcon: Designed for Lightweight Edge Devices

In PQC benchmarking, Falcon’s key generation remains the most CPU-intensive stage. Yet, once established, it enables ultra-light client verification. Ideal for IoT or edge devices with limited compute. Balancing cryptographic strength with system efficiency.🌟 Follow us on LinkedIn! Check the updates from…

Hybrid PQC Handshakes for Quantum Readiness

Quantum-safe cryptography demands hybrid stacks. This study demonstrates Falcon/Kyber and Dilithium/Kyber as complete post-quantum handshake systems. Authentication and key exchange, hardened by lattice-based security. Future-ready communication for AI-driven infrastructures.🌟 Follow us on LinkedIn! Check the updates from the website: www.cleverproject.eu 🌟 Full…

Embedding PQC in Confidential Computing Environments

The shift from non-confidential to confidential computing is underway. By embedding PQC protocols like Falcon and Kyber into DPUs, data-in-use and data-in-transfer are both protected. Secure enclaves now extend from edge to cloud. Hardware-rooted quantum resilience becomes reality.🌟 Follow us on LinkedIn! …

Evaluating PQC Trade-offs: Speed vs. Bandwidth

Falcon’s advantage lies in compact signatures and low bandwidth demand. Dilithium wins in execution speed and balanced computation. This DPU-based study quantifies those trade-offs under realistic workloads. A key step toward PQC-ready network architectures.🌟 Follow us on LinkedIn! Check the updates from…

Cross-Platform PQC: FPGA vs. DPU Performance

From FPGA to ARM DPUs—this paper compares PQC performance across platforms. Dilithium outperforms Falcon on Xilinx FPGAs, while Falcon benefits from DPU software execution. Heterogeneous cryptographic acceleration defines future-proof security layers. Quantum-safe design, benchmarked and validated.🌟 Follow us on LinkedIn! Check the…

Hybrid PQC Stacks for Secure Communication

Combining Kyber’s lattice-based KEM with Falcon or Dilithium signatures creates hybrid PQC stacks. Implemented on NVIDIA’s BlueField DPUs, these achieve secure key exchange plus authentication. Results show scalable, quantum-resistant infrastructure for cloud-edge systems. From cryptography to compute acceleration.🌟 Follow us on LinkedIn! …