Blockchain is considered the critical backbone technology for secure and trusted Internet of Things (IoT) in the future 6G network. However, deploying a blockchain system in a complex wireless IoT network is challenging due to the limited resources, complex wireless environment, and the property of self-interested IoT devices. The existing incentive mechanism of blockchain is not compatible with the wireless IoT network. In this paper, to incentivize IoT devices to join the construction of the wireless blockchain network, we propose a multi-dimensional contract to optimize the blockchain utility while addressing the issues of adverse selection and moral hazard. Specifically, the proposed contract considers the IoT device's hash power and communication cost and especially explores the connectivity of devices from the perspective of complex network theory. We investigate the energy consumption and the block confirmation probability of the wireless blockchain network via simulations under varied network sizes and average link probability. Numerical results demonstrate that our proposed contract mechanism is feasible, achieves 35% more utility than existing approaches, and increases utility by 4 times compared with the original PoW-based incentive mechanism.
翻译:屏障链被认为是未来6G网络中安全和可信赖的物联网的关键主干技术,然而,由于资源有限、无线环境复杂,以及自感兴趣的 IoT 设备特性,在复杂的无线互联网网络中部署一个连锁系统具有挑战性,因为资源有限、无线环境复杂,而且连锁系统的现有激励机制与无线IoT 网络不兼容。在本文中,为了鼓励IoT 设备加入无线连锁网络的建设,我们提议签订一项多维合同,在解决不利选择和道德危害问题的同时,优化连锁系统。具体地说,拟议合同考虑到IoT 设备拥有的电力和通信成本,并特别从复杂的网络理论角度探讨设备的连通性。我们调查了无线连锁网络的能源消耗和区际确认概率,在网络规模和平均链接概率不同的情况下进行模拟。数字结果表明,我们拟议的合同机制是可行的,比现有办法多35%,并且比原PoW激励机制增加4倍的效用。