论文标题
从无线通信的角度重新思考物联网时代的区块链
Rethinking Blockchains in the Internet of Things Era from a Wireless Communication Perspective
论文作者
论文摘要
由于物联网(IoT)的快速发展,大量设备连接到Internet。对于物联网网络中的这些分布式设备,如何确保其安全性和隐私成为一个重大挑战。区块链技术提供了一种有希望的解决方案,可以保护物联网网络的数据完整性,出处,隐私和一致性。在区块链中,沟通是在系统中分发的参与者达成共识的先决条件。但是,在物联网网络中,大多数设备通过无线链接进行通信,这些链接并不总是可靠的。因此,物联网设备的通信可靠性会影响系统安全性。在本文中,我们通过考虑通信可靠性来重新考虑区块链中的通信和计算的作用。我们分析了区块链安全性的通信可靠性和计算能力之间的权衡,并向具有给定通信可靠性进行攻击所需的计算能力提供了下限。仿真结果表明,通过阻碍其他节点的块传播,对抗节点可以成功篡改块,从而较少的计算能力。
Due to the rapid development of Internet of Things (IoT), a massive number of devices are connected to the Internet. For these distributed devices in IoT networks, how to ensure their security and privacy becomes a significant challenge. The blockchain technology provides a promising solution to protect the data integrity, provenance, privacy, and consistency for IoT networks. In blockchains, communication is a prerequisite for participants, which are distributed in the system, to reach consensus. However, in IoT networks, most of the devices communicate through wireless links, which are not always reliable. Hence, the communication reliability of IoT devices influences the system security. In this article, we rethink the roles of communication and computing in blockchains by accounting for communication reliability. We analyze the tradeoff between communication reliability and computing power in blockchain security, and present a lower bound to the computing power that is needed to conduct an attack with a given communication reliability. Simulation results show that adversarial nodes can succeed in tampering a block with less computing power by hindering the propagation of blocks from other nodes.