UAV-based base station (UBS) has played an important role in the air-ground integration network due to its high flexibility and nice air-ground wireless channels. Especially in Internet of Things (IoT) services, UBS can provide an efficient way for data collection from the IoT devices. However, due to the continuous mobility of UBS, the communication durations of devices in different locations with the UBS are not only time-limited, but also vary from each other. Therefore, it is a challenging task to analyze the throughput performance of the UAV-based IoT network. Accordingly, in this paper, we consider an air-ground network in which UAV flies straightly to collect information from the IoT devices based on CSMA/CA protocol. An analytical model analyzing the performance of this protocol in the network is proposed. In detail, we set up the system model for the network, and propose a new concept called quitting probability. Then, a modified Markov chain model integrating the quitting probability is introduced to describe the transmission state transition process and an accurately theoretical analysis of saturation throughput is given. In addition, the effects of the network parameters are discussed in the simulation section.
翻译:无人驾驶航空器基地站(UBS)由于具有高度灵活性和良好的空地无线频道,在空地一体化网络中发挥了重要作用。特别是在Tings(IoT)互联网服务中,无人驾驶航空器可以为从IoT设备收集数据提供高效的途径。然而,由于UBS的连续移动,不同地点与UBS的装置的通信时间不仅有时间限制,而且彼此不同。因此,分析基于UAV的IoT网络的吞吐性能是一项具有挑战性的任务。因此,在本文件中,我们认为,无人驾驶航空器直飞从基于CSMA/CA协议的IoT设备收集信息是一个空地网络。提出了分析网络中这项协议执行情况的分析模型。我们详细建立了网络的系统模型,并提出了一个称为“退出概率”的新概念。然后,引入了含有放弃概率的修改的Markov链模型,以描述传输状态过渡过程和准确的饱和度理论分析。此外,在模拟部分讨论了网络参数的效果。