Abstract
Blockchain technology faces a fundamental challenge known as the trilemma: The difficulty of achieving scalability, security, and decentralization simultaneously. Existing decentralized storage systems struggle with scalability, especially during high transaction volumes. This paper introduces Blockweave, an Arweave-based decentralized storage solution designed to resolve the trilemma. Our approach employs three key innovations: Lightweight 48-byte Transaction Anchors (TAs) that reduce on-chain storage by 89% compared to Bitcoin; Adaptive block sizing (1–200 MB) to scale throughput from 162 to 7200 transactions per second (TPS); and A Proof-of-Access (PoA) consensus mechanism that ensures 99% data redundancy and resilience against attacks. Evaluation results show that Blockweave achieves the highest level of decentralization (Tier-S: 25,000 nodes with no entity controlling (Formula presented.) % of the network). It reduces storage requirements by 3426 (Formula presented.) versus Bitcoin (0.236 GB for 867,541 blocks) and prevents double-spending/Sybil attacks. Experimental results demonstrate high scalability (7200 TPS), robust security, and low-cost participation ($300 nodes), representing a significant improvement over existing decentralized storage solutions.
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CITATION STYLE
Reno, S., Roy, K., & Tabassum, T. (2025). Blockweave: An Arweave-Based Decentralized Storage Solution to Tackle the Blockchain Trilemma. Engineering Reports, 7(7). https://doi.org/10.1002/eng2.70259
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