Category News

Engineering the Future of Quantum Security

Quantum computing is not a threat—it’s an engineering challenge. This study translates complex PQC math into real-world, hardware-level performance metrics. From theory to implementation at linerate. Engineering the cryptographic future, today. 🌟 Follow us on LinkedIn! Check the updates from the website:…

Adaptive PQC Across the Edge-Cloud Continuum

PQC integration is not one-size-fits-all. This paper highlights algorithm placement by device capacity—Falcon for edge, Dilithium for cloud. Each node in the continuum employs fitting cryptographic layers. Security-by-design across digital infrastructure.🌟 Follow us on LinkedIn! Check the updates from the website: www.cleverproject.eu…

Hybrid AES-PQC Encryption for Secure Transition

Combining OpenSSL with PQC creates a hybrid encryption model. The XOR-based key mixing of PQC and TLS secrets forms 256-bit AES keys. A transitional path toward post-quantum readiness. Bridging today’s internet with tomorrow’s cryptography.🌟 Follow us on LinkedIn! Check the updates from…

DPUs as Cryptographic Accelerators

DPUs redefine network-layer cryptography. Their embedded ARMv8 cores and accelerators execute PQC workloads natively. Falcon, Dilithium, and Kyber achieve quantum-safe key exchange inline. Hardware-secured encryption at 100 Gb Follow us on LinkedIn! Check the updates from the website: www.cleverproject.eu 🌟 Full paper…

Hardware Acceleration at Data Center Linerates

Hardware acceleration is key to PQC adoption. This research achieved first-ever in-line PQC processing at data center linerates using NVIDIA DPUs. Results demonstrate that cryptography can scale with network throughput. Security and performance—no longer a trade-off.🌟 Follow us on LinkedIn! Check the…

Lattice-Based Security at 100 Gb/s

Kyber’s polynomial arithmetic achieves secure key encapsulation via modular lattices. Reference implementation on DPUs confirms efficient execution under heavy workloads. Lattice-based security meets real-time communication. Quantum safety without performance loss.🌟 Follow us on LinkedIn! Check the updates from the website: www.cleverproject.eu 🌟…

Network Efficiency in PQC Deployments

Comparative analysis shows Dilithium produces higher network load than Falcon. But Falcon’s lower throughput makes it optimal for constrained links. Each algorithm targets a distinct network layer. Adaptive PQC for heterogeneous digital ecosystems.🌟 Follow us on LinkedIn! Check the updates from the…

Dilithium/Kyber: Balanced PQC for Cloud Workloads

Dilithium’s balanced workload makes it ideal for symmetric compute environments. Its uniform server-client distribution simplifies deployment in data centers. Predictable performance and open-source API integration ensure portability. Reliable PQC for large-scale infrastructure.🌟 Follow us on LinkedIn! Check the updates from the website:…

Falcon 1024: High Security, Higher Compute Demand

 On NVIDIA’s DPU, Falcon 1024 increases key generation cost by 93% over Falcon 512. Yet, it provides the highest NIST security level with compact signatures. Speed versus size—a calculated PQC trade-off for system designers. Data-driven security optimization in practice.🌟 Follow us on LinkedIn!…