Known as a distributed ledger technology (DLT), blockchain has attracted much attention due to its properties such as decentralization, security, immutability and transparency, and its potential of servicing as an infrastructure for various applications. Blockchain can empower wireless networks with identity management, data integrity, access control, and high-level security. However, previous studies on blockchain-enabled wireless networks mostly focus on proposing architectures or building systems with popular blockchain protocols. Nevertheless, such existing protocols have obvious shortcomings when adopted in a wireless network where nodes have limited physical resources, favor low communication complexity, and encounter wireless-specific problems. In this paper, we propose a novel consensus protocol named Proof-of-Channel (PoC) leveraging the natural properties of wireless networks, and a BLOWN protocol (BLOckchain protocol for Wireless Networks) for wireless networks under an adversarial SINR model. We formalize BLOWN with the universal composition framework and prove its security properties, namely persistence and liveness, against adversarial jamming, double-spending, and Sybil attacks, which are also demonstrated by extensive simulation studies.
翻译:电链链因其诸如权力下放、安全、不可移动性和透明度等特性及其作为各种应用的基础设施而提供服务的潜力而引起人们的极大关注。 电链链能够赋予无线网络以身份管理、数据完整性、访问控制和高级别安全等方面的权力。然而,以往关于无链链化无线网络的研究主要侧重于提出建筑或建造具有广受欢迎的电链协议的系统。然而,在无线网络中采用这种现有协议显然存在缺点,因为节点的物理资源有限,有利于低通信复杂性和遇到无线特有问题的无线网络。在本文件中,我们提出了一项新的共识协议,名为“校对”,利用无线网络的自然特性,以及无线网络的BLOWN协议(无线网络的无线链协议),在对抗性SINR模式下,我们将无线网与通用的构成框架正式化,并证明它的安全特性,即持久性和活性,反对对抗性干扰、双重重复和Sybil攻击, 广泛模拟研究也证明了这一点。