基于区块链的无线通信安全数据共享方案

Rama Mishra, K. Joshi, Durgaprasad Gangodkar
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引用次数: 0

摘要

通过成功地实现数据交换,电话计算(MEC)在允许各种服务应用程序中起着至关重要的作用。然而,MEC的独特特点也导致了隐私和数据安全问题,阻碍了MEC的发展。确保数据交换的安全性和真实性的潜在解决方案是区块链。然而,由于通道容量的变化和有限的带宽,将加密货币集成到MEC系统中是一项艰巨的任务。在本文中,我们使用非对称学习技术为比特币MEC系统提出了一种高度安全的交换机制。首先,提供了区块链支持的MEC系统中安全数据交换的架构。然后,根据现有的系统资源和用户对隐私的期望,我们提供了一种可定制的保密技术。为了提高系统性能,同时最大限度地减少MEC系统能耗和提高区块链网络吞吐量,然后在区块链支持的MEC系统中开发了一个安全的数据共享优化问题。特别是,异步学习策略用于解决所提出的问题。将我们建议的安全数据共享技术与各种知名的参考技术在典型性能、能耗和奖励方面进行比较,数值结果表明它更好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Blockchain-Enabled Secure Data Sharing Scheme in Wireless Communication
By successfully implementing data exchange, phone computation (MEC) plays a vital role in allowing a variety of service applications. However, the distinctive features of MEC also cause issues with privacy and data security which hinders the growth of MEC. A potential solution to ensure the security and authenticity of data exchange is blockchain. However, due to the changing nature of channel capacity and limited bandwidth, integrating cryptocurrency into the MEC system is a difficult task. In this paper, we use an asymmetric learning technique to propose a highly secure exchange mechanism for the bitcoin MEC system. First, an architecture for safe data exchange in the MEC system that is enabled by blockchain is provided. Then, based on the system resources on hand and the users' expectations for privacy, we provide a customizable secrecy technique. In order to enhance system performance while minimising MEC system energy consumption and increasing blockchain network throughput, a safe data sharing optimization problem is then developed in the blockchain-enabled MEC system. In particular, an asynchronous learning strategy is used to address the posed issue. Comparing our suggested safe data sharing technique to various well-known reference techniques in terms of typical performance, energy consumption, and reward, the numerical results indicate that it is better.
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