私有区块链架构和智能合约在去中心化5G军事化网络中的作用

C. Maracchion, Timothy Woods, Sean Furman, A. Drozd
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引用次数: 0

摘要

建议使用私有区块链来增强分散的基于5g的国防部无线网络安全性、可审计性、治理和整体性能。本文探索并验证了利用区块链方法固有的智能合约和分散共识机制来安全地增强无线网络性能的方法。假设一个实时的,分散的架构软件实现具有详细的接口,以确定区块链和智能合约如何基于作者开发的专利方法应用于现实世界的无线网络。提出了分布式无线网络通过低延迟区块链交易执行网络仲裁、频谱服务水平协议和业务逻辑的方法。仿真结果表征了分散无线网络范例中典型区块链交易延迟的性能,以确定可行性。讨论了联邦和非联邦频谱共享的用例研究,展示了私有去中心化区块链架构和智能合约如何显著提高无线网络性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Role of Private Blockchain Architectures and Smart Contracts for Decentralized 5G Militarized Networks
The use of private blockchains is proposed to enhance decentralized 5G-based DoD wireless network security, auditability, governance, and overall performance. This paper explores and validates methods for leveraging smart contracts and decentralized consensus mechanisms inherent to blockchain approaches to securely enhance wireless network performance. A real-time, decentralized architectural software implementation is postulated with detailed interfaces to determine how blockchain and smart contracts apply to real-world wireless networks based on a patented approach developed by the authors. Methods are presented for decentralized wireless networks to perform network arbitration, spectrum service level agreements, and business logic through low latency blockchain transactions. Simulation results characterize the performance of typical blockchain transaction latencies in decentralized wireless network paradigms to determine feasibility. Use case studies of federal and non-federal spectrum sharing are discussed that demonstrate how a private decentralized blockchain architecture and smart contracts can provide considerably improved wireless network performance.
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