In this paper, we propose a trust-centric privacy-preserving blockchain for dynamic spectrum access in IoT networks. To be specific, we propose a trust evaluation mechanism to evaluate the trustworthiness of sensing nodes and design a Proof-of-Trust (PoT) consensus mechanism to build a scalable blockchain with high transaction-per-second (TPS). Moreover, a privacy protection scheme is proposed to protect sensors' real-time geolocatioin information when they upload sensing data to the blockchain. Two smart contracts are designed to make the whole procedure (spectrum sensing, spectrum auction, and spectrum allocation) run automatically. Simulation results demonstrate the expected computation cost of the PoT consensus algorithm for reliable sensing nodes is low, and the cooperative sensing performance is improved with the help of trust value evaluation mechanism.In addition, incentivization and security are also analyzed, which show that our design not only can encourage nodes' participation, but also resist to many kinds of attacks which are frequently encountered in trust-based blockchain systems.
翻译:在本文中,我们提议为IoT网络的动态频谱访问建立一个以信任为中心的隐私保护链。具体地说,我们提议建立一个信任评价机制,以评价感知节点的可信度,并设计一个信任证明(PoT)共识机制,以建立一个每秒交易量高(TPS)的可扩缩的链条。此外,还提议了一个隐私保护计划,以保护传感器将感测数据上传到电路链时的实时地球卡通信息。两个智能合同旨在使整个程序(频谱感、频谱拍卖和频谱分配)自动运行。模拟结果显示,PoT可靠感测节点共识算法的预期计算成本很低,合作感测绩效在信任价值评估机制的帮助下得到改进。此外,还分析了激励和安全性,这表明我们的设计不仅能够鼓励节点的参与,而且能够抵制在基于信任的链系统中经常遇到的许多类型的攻击。