Wireless Streamlet: A Spectrum-Aware and Cognitive Consensus Protocol for Edge IoT
Taotao Wang, Long Shi, Fang Liu, Qing Yang, and Shengli Zhang

TL;DR
Wireless Streamlet introduces a spectrum-aware, cognitive consensus protocol for edge IoT that enhances throughput, reduces latency, and minimizes storage by integrating channel sensing and deterministic scheduling into blockchain consensus.
Contribution
It presents a novel spectrum-aware, cognitive consensus protocol with a channel-aware leader election and a dual-chain architecture for efficient wireless edge IoT blockchain deployment.
Findings
Higher throughput and lower latency in lossy environments.
Reduced per-node storage requirements.
Effective integration of cognitive sensing into consensus logic.
Abstract
Blockchain offers a decentralized trust framework for the Internet of Things (IoT), yet deploying consensus in spectrum-congested and dynamic wireless edge IoT networks faces fundamental obstacles: traditional BFT protocols are spectrum-ignorant, leading to inefficient resource utilization and fragile progress under time-varying interference. This paper presents \textit{Wireless Streamlet}, a spectrum-aware and cognitive consensus protocol tailored for wireless edge IoT. Building on Streamlet's streamlined structure, we introduce a \textit{Channel-Aware Leader Election (CALE)} mechanism. CALE serves as a verifiable cross-layer cognitive engine that leverages receiver-measured channel state information (CSI) piggybacked in signed votes to derive Byzantine-robust connectivity scores from notarization certificates, and deterministically selects a unique weighted leader per epoch from…
Peer Reviews
No public reviews on file for this paper yet. If you reviewed it on a platform where reviews are public (OpenReview, ICLR, NeurIPS, ICML), you can paste yours below so the community can read it here.
Videos
No videos yet. Explain this paper in a talk, walkthrough, or lecture? Add one.
Taxonomy
TopicsAge of Information Optimization · Cognitive Radio Networks and Spectrum Sensing · IoT Networks and Protocols
