Several types of networks that comprise unmanned aerial vehicles (UAV or drone) are being utilized in important applications such as emergency response, environment and infrastructure monitoring, defense and security, and commerce. In such networks, swarms of UAVs cooperate in executing one or more missions to achieve the application's objectives. The UAVs communicate with terrestrial networks by connecting to fixed or mobile ground control stations (GCS). The ability of drones to connect to online applications and offer services to Internet users has led to the proliferation of the Internet of Drones (IoD). However, IoD applications are highly vulnerable to many types of cyberattacks. Hence, mechanisms must be deployed to secure the IoD operations and data. Recently, the blockchain has been proposed as a solution to detect and prevent malicious attacks on the UAV network (UAVN). Due to the UAV's limited resources, it becomes a challenge to integrate the blockchain into the IoD. In this paper, we propose a model that enables a drone to store the important data that it requires during its flight within a lightweight blockchain system. In addition, we propose a new blockchain consensus mechanism in which several miners produce their blocks in parallel, which decreases the time needed to add transactions securely to the blockchain and meets the requirements of delay-sensitive applications. Our simulations prove the advantages of the proposed model in decreasing the transaction-to-blockchain delay, the average drone energy consumption, and the blockchain block size as compared to other IoD blockchain systems.
翻译:由无人驾驶航空飞行器(无人驾驶航空器或无人驾驶飞机)组成的若干类型的网络正在被用于重要应用领域,如应急反应、环境和基础设施监测、国防和安全以及商务等。在这类网络中,无人驾驶航空器的群落合作执行一个或多个飞行任务以实现应用目标。无人驾驶航空器与地面网络连接固定或移动地面控制站(GCS),无人驾驶航空器与地面网络进行通信。无人驾驶航空器连接到在线应用程序和向互联网用户提供服务的能力导致Droones(IoD)互联网扩散。然而,IoD应用程序极易受到许多类型的网络攻击。因此,必须部署各种机制来保障IoD业务和数据的安全。最近,有人提议将封锁链作为探测和防止对UAV网络(UAVN)的恶意袭击的一种解决办法。由于无人驾驶航空器资源有限,将块链连接到互联网用户的连锁系统(IoD)的能力带来了挑战。我们提出了一种模式,使无人驾驶飞行器能够储存其飞行期间所需的重要数据。此外,我们提议采用新的机制,确保IoD运行作业的操作规模和数据安全性链式系统在较慢的运输中,从而实现我们安全的供应链的系统所需的安全性交易的延迟,从而使得金属的系统在稳定的运输中的运输中的运输中增加了需要。