Energy-Efficient Lightweight Blockchain Framework for Secure Sensor Networks — Archive Location

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A 10-page 2026 paper proposing an adaptive PoS/DPoS blockchain, trust-based routing, and machine-learning intrusion detection for IoT sensor networks. Purchase reveals its verified preserved PDF location.

Description

TL;DR: A lightweight blockchain framework aimed at resource-constrained wireless sensor networks, tested across simulated networks from 100 to 10,000 nodes.

About This Document

The proposed design combines adaptive proof of stake, delegated proof of stake, trust-based routing, and a random-forest intrusion-detection system. The study reports energy use, throughput, privacy-breach rates, and detection accuracy against DDoS, Sybil, and jamming attacks, including validation with the GreenOrbs dataset.

Why Bitcoin People May Care

This is not a Bitcoin implementation. It is relevant to the wider consensus and adversarial-systems shelf: Sybil resistance, network scale, energy constraints, throughput, and what happens when a blockchain must run around tiny sensors instead of warehouse-sized mining hardware.

What You Receive

Purchase reveals the verified preserved PDF location for this document.

Document Details

  • Title: Energy-Efficient Lightweight Blockchain Framework for Secure Sensor Networks
  • Author / organization: Surendran Swapna Kumar, Kalli Satyanarayan Reddy
  • Year: 2026
  • Document type: Network-security research paper
  • Pages: 10

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