Description
TL;DR: A security framework for pooled computing that addresses hash-rate hijacking, template tampering, replay, endpoint impersonation, and coordinator failure.
About This Document
Natalia Kuznetsova proposes a multilayer architecture spanning participant registration, cryptographic identity, mutual endpoint authentication, protected sessions, anti-replay controls, work-template verification, API security, anomaly monitoring, redundant coordinators, and controlled failover. The paper compares a conventional pooled-hash environment with the proposed framework across attack containment, availability, detection, recovery time, incidents, and overhead.
Why Bitcoin People May Care
The framework draws on cryptocurrency mining and distributed-consensus security, but it is written as a generalized pooled-hash architecture rather than a Bitcoin mining-pool implementation report. Its reported improvements are the paper's analytical evaluation, not an independent deployment audit. Readers can use it as a checklist of the communication surfaces around shared computation.
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Document Details
- Title: Secure Consensus Communication for Pooled-Hash Computing
- Author / organization: Natalia Kuznetsova
- Year: 2022
- Language: English
- Document type: Research paper
- Pages: 15
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