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首页> 外文期刊>International Journal of Distributed Sensor Networks >Latency and energy-efficient multi-hop routing protocol for unmanned aerial vehicle networks
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Latency and energy-efficient multi-hop routing protocol for unmanned aerial vehicle networks

机译:无人机网络的延迟和高能效多跳路由协议

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Unmanned aerial vehicle is one of the main announced use cases of 5G/IMT2020, which is expected to have various applications in many fields. These devices have limited capabilities in terms of energy and processing. Due to the complex structure of unmanned aerial vehicle networks and the high mobility constraints, design of efficient routing protocol, for supporting such network, is a challenge. Thus, efficient routing of data among unmanned aerial vehicles between source and destination is an important issue in designing unmanned aerial vehicle networks. Proactive routing protocols are one of the main categories of routing protocols developed for mobile ad hoc networks and vehicular ad hoc networks. Optimized link state routing protocol is one of the most common proactive routing protocols that has been modified to support unmanned aerial vehicle networks, considering high mobility feature of the network. In this work, we propose a latency and energy-efficient proactive routing protocol for dense unmanned aerial vehicle networks, with high-density devices, based on optimized link state routing protocol algorithm, referred to as multi-objective optimized link state routing protocol. The proposed routing protocol is topology aware and can be used for low-latency and high-mobility applications. The proposed multi-objective optimized link state routing protocol routing algorithm considers all modified versions of optimized link state routing protocol and introduces a novel method for selecting multipoint relay nodes that considers the traffic load on the communication channel and the load on each unmanned aerial vehicle node. Moreover, the proposed algorithm considers the communication link stability and the energy constraints. The system is simulated over a reliable environment for various scenarios, and it is compared to the original optimized link state routing protocol and its modified versions. Simulation results indicate that the proposed protocol achieves higher efficiency in terms of latency, energy, and reliability.
机译:无人机是5G / IMT2020宣布的主要用例之一,预计在许多领域将有多种应用。这些设备在能量​​和处理方面的能力有限。由于无人飞行器网络的复杂结构和高移动性约束,用于支持这种网络的有效路由协议的设计是一个挑战。因此,在源和目的地之间的无人飞行器之间的数据的有效路由是设计无人飞行器网络的重要问题。主动路由协议是为移动自组织网络和车辆自组织网络开发的路由协议的主要类别之一。考虑到网络的高移动性,优化的链路状态路由协议是最常见的主动路由协议之一,已对其进行了修改以支持无人机网络。在这项工作中,我们基于优化的链路状态路由协议算法,即多目标优化的链路状态路由协议,为具有高密度设备的密集无人飞行器网络提出了一种时延和高能效的主动路由协议。提出的路由协议具有拓扑意识,可用于低延迟和高移动性的应用程序。提出的多目标优化链路状态路由协议路由算法考虑了优化链路状态路由协议的所有修改版本,并引入了一种选择多点中继节点的新方法,该方法考虑了通信信道上的业务负载以及每个无人机节点上的负载。此外,该算法考虑了通信链路的稳定性和能量约束。该系统在各种情况下的可靠环境中进行了仿真,并将其与原始的优化链路状态路由协议及其修改版本进行了比较。仿真结果表明,所提出的协议在等待时间,能量和可靠性方面都实现了更高的效率。

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