Lightweight and High-Throughput Secure Logging for Internet of Things and Cold Cloud Continuum
Saif E. Nouma, Attila A. Yavuz

TL;DR
This paper introduces POSLO, a novel cryptographic logging framework that provides efficient, scalable, and secure log signatures suitable for resource-constrained IoT devices and cold storage systems, with fast verification and low storage overhead.
Contribution
POSLO is the first to offer constant-size signatures and public keys with near-optimal signing efficiency and tunable verification, optimized for IoT and Cold-STaaS environments.
Findings
Verifies 231 log entries per second on a GTX 3060 GPU
Significantly reduces storage size compared to state-of-the-art
Substantial battery savings for IoT device signers
Abstract
The growing deployment of resource-limited Internet of Things (IoT) devices and their expanding attack surfaces demand efficient and scalable security mechanisms. System logs are vital for the trust and auditability of IoT, and offloading their maintenance to a Cold Storage-as-a-Service (Cold-STaaS) enhances cost-effectiveness and reliability. However, existing cryptographic logging solutions either burden low-end IoT devices with heavy computation or create verification delays and storage inefficiencies at Cold-STaaS. There is a pressing need for cryptographic primitives that balance security, performance, and scalability across IoT-Cold-STaaS continuum. In this work, we present Parallel Optimal Signatures for Secure Logging (POSLO), a novel digital signature framework that, to our knowledge, is the first to offer constant-size signatures and public keys, near-optimal signing…
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Taxonomy
TopicsIoT and Edge/Fog Computing · Cryptography and Data Security · Cloud Data Security Solutions
